WO2019041830A1 - Flexible display panel, flexible display apparatus, and display control method thereof - Google Patents

Flexible display panel, flexible display apparatus, and display control method thereof Download PDF

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Publication number
WO2019041830A1
WO2019041830A1 PCT/CN2018/083699 CN2018083699W WO2019041830A1 WO 2019041830 A1 WO2019041830 A1 WO 2019041830A1 CN 2018083699 W CN2018083699 W CN 2018083699W WO 2019041830 A1 WO2019041830 A1 WO 2019041830A1
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WIPO (PCT)
Prior art keywords
region
flexible display
display panel
strain sensor
resistor
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Ceased
Application number
PCT/CN2018/083699
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French (fr)
Inventor
Guangliang Shang
Seungwoo HAN
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BOE Technology Group Co Ltd
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BOE Technology Group Co Ltd
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Priority to US16/301,843 priority Critical patent/US11282424B2/en
Priority to EP18826166.3A priority patent/EP3676821A4/en
Publication of WO2019041830A1 publication Critical patent/WO2019041830A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G3/00Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
    • G09G3/20Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters
    • HELECTRICITY
    • H10SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
    • H10DINORGANIC ELECTRIC SEMICONDUCTOR DEVICES
    • H10D86/00Integrated devices formed in or on insulating or conducting substrates, e.g. formed in silicon-on-insulator [SOI] substrates or on stainless steel or glass substrates
    • H10D86/40Integrated devices formed in or on insulating or conducting substrates, e.g. formed in silicon-on-insulator [SOI] substrates or on stainless steel or glass substrates characterised by multiple TFTs
    • H10D86/411Integrated devices formed in or on insulating or conducting substrates, e.g. formed in silicon-on-insulator [SOI] substrates or on stainless steel or glass substrates characterised by multiple TFTs characterised by materials, geometry or structure of the substrates
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01BMEASURING LENGTH, THICKNESS OR SIMILAR LINEAR DIMENSIONS; MEASURING ANGLES; MEASURING AREAS; MEASURING IRREGULARITIES OF SURFACES OR CONTOURS
    • G01B7/00Measuring arrangements characterised by the use of electric or magnetic techniques
    • G01B7/16Measuring arrangements characterised by the use of electric or magnetic techniques for measuring the deformation in a solid, e.g. by resistance strain gauge
    • G01B7/18Measuring arrangements characterised by the use of electric or magnetic techniques for measuring the deformation in a solid, e.g. by resistance strain gauge using change in resistance
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F9/00Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements
    • G09F9/30Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements
    • G09F9/301Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements flexible foldable or roll-able electronic displays, e.g. thin LCD, OLED
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G3/00Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
    • G09G3/03Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes specially adapted for displays having non-planar surfaces, e.g. curved displays
    • G09G3/035Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes specially adapted for displays having non-planar surfaces, e.g. curved displays for flexible display surfaces
    • HELECTRICITY
    • H10SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
    • H10DINORGANIC ELECTRIC SEMICONDUCTOR DEVICES
    • H10D86/00Integrated devices formed in or on insulating or conducting substrates, e.g. formed in silicon-on-insulator [SOI] substrates or on stainless steel or glass substrates
    • H10D86/40Integrated devices formed in or on insulating or conducting substrates, e.g. formed in silicon-on-insulator [SOI] substrates or on stainless steel or glass substrates characterised by multiple TFTs
    • H10D86/60Integrated devices formed in or on insulating or conducting substrates, e.g. formed in silicon-on-insulator [SOI] substrates or on stainless steel or glass substrates characterised by multiple TFTs wherein the TFTs are in active matrices
    • HELECTRICITY
    • H10SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
    • H10WGENERIC PACKAGES, INTERCONNECTIONS, CONNECTORS OR OTHER CONSTRUCTIONAL DETAILS OF DEVICES COVERED BY CLASS H10
    • H10W46/00Marks applied to devices, e.g. for alignment or identification
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2340/00Aspects of display data processing
    • G09G2340/04Changes in size, position or resolution of an image
    • G09G2340/0407Resolution change, inclusive of the use of different resolutions for different screen areas
    • HELECTRICITY
    • H10SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
    • H10KORGANIC ELECTRIC SOLID-STATE DEVICES
    • H10K2102/00Constructional details relating to the organic devices covered by this subclass
    • H10K2102/301Details of OLEDs
    • H10K2102/311Flexible OLED

Definitions

  • This invention relates to display technology, and more particularly, to a flexible display panel, a flexible display apparatus, and a display control method thereof.
  • a flexible display apparatus has certain advantages. For example, it can be bent, folded, and manufactured into a wide variety of forms and the like. Thus, the flexible display apparatus has been widely used in a plurality of fields.
  • the flexible display panel may include a display substrate, a plurality of pixel units arranged in an array on the display substrate, and at least one strain sensor on the display substrate.
  • the at least one strain sensor may be configured to detect deformation of the flexible display panel.
  • Each of the at least one strain sensor may correspond to a region of the flexible display panel comprising a plurality of rows of pixel units and may be configured to detect the deformation in the region of the flexible display panel.
  • the at least one strain sensor may include a plurality of strain sensors, and the plurality of the strain sensors may be arranged in a non-display region along a first direction.
  • the strain sensor may be a resistive strain sensor.
  • the resistive strain sensor may include a repeatedly folded strain resistance wire along the first direction with a plurality of folding portions, and the plurality of folding portions may be arranged along a second direction.
  • the at least one strain sensor in the non-display region may be configured to detect the deformation of the display panel along the second direction.
  • the flexible display panel may further include a signal acquisition circuit coupled to the at least one strain sensor and configured to acquire a detection signal from the at least one strain sensor.
  • the flexible display panel may further include an amplifier circuit coupled to the signal acquisition circuit, and configured to receive and amplify the detection signal and an AD converter circuit coupled to the amplified circuit and configured to convert the amplified detection signal to a digital signal.
  • the signal acquisition circuit may include a first resistor, a second resistor, a third resistor, and a voltage detector.
  • the first resistor, the second resistor, the third resistor, and the strain sensor may form a Wheatstone bridge, and an output terminal of the voltage detector may output a voltage signal.
  • the signal acquisition circuit may include a first resistor, a second resistor, a third resistor, and a current detector.
  • the first resistor, the second resistor, the third resistor, and the strain sensor may form a Wheatstone bridge, and an output terminal of the current detector may output a current signal.
  • the flexible display apparatus include the flexible display panel according to one embodiment of the present disclosure.
  • the flexible display apparatus may further include a display controller coupled to the at least a strain sensor.
  • the display controller may be configured to determine a region where the deformation occurs in the flexible display panel based on the detection signal, to determine a target display region based on the region where the deformation occurs in the flexible display panel, and to control display of the target display region.
  • the target display region may include at least one non-deformed region that is at one side of the region where the deformation occurs in the flexible display panel.
  • the display controller may be further configured to acquire information about the number of rows of pixel units in the target display region, to generate a corresponding number of clock signals based on the number of rows of the pixel units in the target display region, and to control the target display region to display through the corresponding number of the clock signals.
  • the display control method may include detecting deformation of the flexible display panel and generating a detection signal, determining a region where the deformation occurs in the flexible display panel based on the detection signal, determining a target display region based on the region where the deformation occurs in the flexible display panel, and controlling display of the target display region.
  • the target display region may include at least one non-deformed region that is at one side of the region where the deformation occurs in the flexible display panel.
  • Controlling display of the target display region may include acquiring information about the number of rows of pixel units in the target display region, generating a corresponding number of clock signals based on the number of rows of the pixel units in the target display region, and controlling the target display region to display through the corresponding number of the clock signals.
  • Fig. 1 is a schematic structural diagram of a flexible display panel according to an embodiment of the present disclosure
  • Fig. 2 is a schematic diagram of a rollable flexible display panel according to an embodiment of the present disclosure
  • Fig. 3 is a schematic diagram of a foldable flexible display panel according to an embodiment of the present disclosure.
  • Fig. 4 is a schematic diagram of a bendable flexible display panel according to an embodiment of the present disclosure.
  • Fig. 5 is a schematic structural diagram of a flexible display panel according to an embodiment of the present disclosure.
  • Fig. 6 is a schematic diagram of a circuit of a signal acquisition apparatus according to an embodiment of the present disclosure.
  • Fig. 7 is a schematic diagram of a circuit of a signal acquisition apparatus according to an embodiment of the present disclosure.
  • Fig. 8 is a schematic structural diagram of a flexible display apparatus according to an embodiment of the present disclosure.
  • Fig. 9 is a schematic block diagram of a flexible display apparatus according to an embodiment of the present disclosure.
  • Fig. 10 is a timing diagram of clock signals according to an embodiment of the present disclosure.
  • Fig. 11 is a schematic structural diagram of a flexible display panel according to an embodiment of the present disclosure.
  • Fig. 12 is a flowchart of a display control method of a flexible display apparatus according to an embodiment of the present disclosure.
  • a flexible display panel, a flexible display apparatus, and a display control method thereof according to embodiments of the present disclosure are described below with reference to the accompanying drawings.
  • Fig. 1 is a schematic structural diagram of a flexible display panel according to an embodiment of the present disclosure.
  • the flexible display panel 1 includes a display substrate 100, a plurality of pixel units 10 arranged in an array on the display substrate 100, and a strain sensor 20 arranged on the display substrate 100 corresponding to a region including at least one of the plurality of pixel units 10.
  • the strain sensor 20 is used for detecting deformation in the region including at least one of the plurality of pixel units 10 and generating a detection signal.
  • the display substrate 100 may be made of a plastic film such as a polyimide (PI) film and the like, and is capable of being deformed.
  • the flexible display panel including the display substrate 100 is a rollable flexible display panel. That is, the flexible display panel including the display substrate 100 can be rolled.
  • the flexible display panel including the display substrate 100 may be a foldable flexible display panel. That is, the flexible display panel including the display substrate 100 can be folded.
  • the flexible display panel including the display substrate 100 may be a bendable flexible display panel. That is, the flexible display panel including the display substrate 100 can be bent.
  • a flexible display panel including the display substrate 100 is capable of other forms of deformation which are generated according to actual application of the flexible display panel. It is not set forth herein.
  • the strain sensor 20 may be a resistive strain sensor.
  • the resistive strain sensors are arranged respectively corresponding to a region including at least one of the plurality of pixel units 10. When a region including at least one of the plurality of pixel units 10 is deformed, the corresponding resistive strain sensor is also deformed. A resistance of the corresponding resistive strain sensor is changed accordingly. Therefore, when the corresponding resistive strain sensor generates a detection signal based on the change of the resistance, the region including at least one of the plurality of pixel units 10 that is deformed can be determined based on the detection signal.
  • the number of the strain sensors 20 may be multiple.
  • a plurality of strain sensors 20 are arranged in different regions of the flexible display panel 1 to detect deformation in the plurality of regions of the flexible display panel 1 respectively.
  • the display region of the flexible display panel 1 may include a plurality of Gate-driver On Array (GOA) units arranged in a column direction.
  • GOA Gate-driver On Array
  • Each of the GOA units corresponds to one row of pixel units and one gate line.
  • the display region of the flexible display panel 1 may include multiple rows of pixel units.
  • each of the plurality of strain sensors 20 is arranged respectively corresponding to a region including a preset number of rows of pixel units 10.
  • the plurality of strain sensors 20 are arranged in the column direction of the pixel units 10.
  • the number of rows of the pixel units 10 corresponding to each of the strain sensors 20 may be the same or not.
  • the flexible display panel 1 can be divided into a plurality of regions.
  • Each of the plurality of regions includes a corresponding preset number of rows of pixel units 10.
  • a strain sensor 20 is arranged corresponding to each of the plurality of regions.
  • Each of the strain sensors 20 can generate a detection signal when the flexible display panel 1 is stretched in the column direction of the pixel units 10.
  • the region where deformation occurs can be determined based on the region which the strain sensor 20 that generates the detection signal among the plurality of strain sensors 20 corresponds to.
  • Each of the gate lines in the flexible display panel is arranged corresponding to a row of pixel units.
  • Each of the data lines in the flexible display panel is arranged corresponding to a column of pixel units. That is, in one embodiment of the present disclosure, the row direction is parallel to the direction of the gate lines.
  • the column direction is parallel to the direction of the data lines. Since the strain sensors 20 are arranged in the column direction of the pixel units 10, in one embodiment, when the flexible display panel is folded, bent, or rolled along the gate lines, the strain sensors 20 are stretched and generate a detection signal. When the flexible display panel is folded, bent or rolled along the data lines, the strain sensors 20 do not generate a detection signal.
  • the plurality of strain sensors 20 may be arranged in a non-display region at a side of a preset number of rows of pixel units respectively. That is, the strain sensors 20 do not overlap with positions of the pixel units 10, thereby facilitating arrangement and wiring of the strain sensors 20 and preventing the strain sensors 20, the pixel units 10, and the driving circuit of the pixel units 10 from impacting one another with respect to electrical connection, electromagnetism, and heat dissipation and the like.
  • the resistive strain sensor 20 may be a strain resistance wire having a plurality of folding portions.
  • the plurality of folding portions is arranged in a row direction of the pixel units. That is, in a region corresponding to a preset number of rows of pixel units, a strain resistance wire can be arranged back and forth along the row and column direction of the pixel units so as to form the strain sensor 20, as shown in Fig. 5.
  • the detection signal generated according to the change of the resistance value can be converted through a signal acquisition apparatus 30 connected with the strain sensor 20 to a conversion signal.
  • the signal acquisition apparatus 30 may comprise a first resistor R1, a second resistor R2, a third resistor R3, and a voltage detector Vt.
  • a first terminal of the first resistor R1 is connected with a first terminal of the strain sensor 20.
  • a node ā€œbā€ is present between the first terminal of the first resistor R1 and the first terminal of the strain sensor 20.
  • a first terminal of the second resistor R2 is connected with a second terminal of the strain sensor 20.
  • a second terminal of the first resistor R1 is connected to an anode of a preset power supply, and a first terminal of the second resistor is connected to a cathode of the preset power supply.
  • a first terminal of the third resistor R3 is connected to a second terminal of the first resistor R1.
  • a second terminal of the third resistor R3 is connected to a second terminal of the second resistor R2.
  • the first terminal of the voltage detector Vt is connected with the first terminal of the first resistor R1.
  • the second terminal of the voltage detector Vt is connected with the second terminal of the second resistor R2.
  • the output terminal of the voltage detector Vt can output a voltage signal. That is, the first resistor R1, the second resistor R2, the third resistor R3, the strain sensor 20 and the voltage detector Vt can form a Wheatstone bridge.
  • the resistance of the strain sensor 20 is Rs.
  • the amount of change of the resistance thereof is ⁇ Rs.
  • the voltage of the preset power supply is Vi.
  • the signal acquisition apparatus 30 may comprise a first resistor R1, a second resistor R2, a third resistor R3, and a current detector At.
  • a first terminal of the first resistor R1 is connected with a first terminal of the strain sensor 20.
  • a first terminal of the second resistor R2 is connected with a second terminal of the strain sensor 20.
  • a second terminal of the first resistor R1 is connected to an anode of a preset power supply.
  • a first terminal of the second resistor is connected to a cathode of the preset power supply.
  • a first terminal of the third resistor R3 is connected with the second terminal of the first resistor R1.
  • a second terminal of the third resistor R3 is connected with the second terminal of the second resistor R2.
  • a first terminal of the current detector At is connected with the first terminal of the first resistor R1.
  • a second terminal of the current detector At is connected with the second terminal of the second resistor R2.
  • the output terminal of the current detector At outputs a current signal. That is, the first resistor R1, the second resistor R2, the third resistor R3, and the strain sensor can form a Wheatstone bridge.
  • the current Io outputted by the current detector At is determined only by the amount of change of the resistance of the strain sensor ⁇ Rs when the strain sensor 20 deforms.
  • a signal of a change of resistance of the strain sensor 20 can be converted into a current signal or a voltage signal.
  • a display controller such as a Time Control Register (TCON, timer/counter control register/logic board) is used to identify the conversion signal to finally determine the region where the deformation occurs.
  • TCON Time Control Register
  • the current or voltage signal obtained by the conversion is generally very small. Therefore, in one embodiment, as shown in Fig. 8, an amplifier 40 may be connected with the signal acquisition apparatus 30 to amplify the conversion signal obtained by the signal acquisition apparatus 30.
  • an Analog to Digital (AD) converter 50 may be connected with the amplifier 40 to perform the AD conversion of the amplified conversion signals.
  • AD Analog to Digital
  • each of the strain sensors 20 may be correspondingly provided with a signal acquisition apparatus 30, an amplifier 40, and an AD converter 50.
  • each of the strain sensors 20 may be correspondingly provided with a signal acquisition apparatus 30.
  • the plurality of signal acquisition apparatuses 30 corresponding to the plurality of strain sensors 20 are connected to an amplifier 40. That is, the plurality of strain sensors 20 shares one amplifier 40 and one AD converter 50.
  • the signal acquisition apparatuses 30, the amplifier 40 and the AD converter 50 may be disposed on the display substrate 100.
  • the signal acquisition apparatus 30, the amplifier 40, and the AD converter 50 may be integrated with the corresponding strain sensor 20, and are disposed in a non-display region of the display substrate together with the corresponding strain sensor 20.
  • the display controller such as the TCON can determine the region where the deformation occurs in the flexible display panel 1 based on the received digital signal, thereby facilitating further display control of the flexible display panel 1.
  • the deformed region of the flexible display panel can be conveniently and effectively detected.
  • the flexible display apparatus includes the flexible display panel 1 provided according to one embodiment of the present disclosure.
  • the flexible display apparatus further comprises a display controller 2.
  • the display controller 2 is connected with the strain sensor 20.
  • the display controller 2 is used for determining the region where deformation occurs in the flexible display panel 1 based on the detection signal generated by the strain sensor 20; determining a target display region based on the region where the deformation occurs in the flexible display panel 1; and generating a display control signal of the target display region.
  • Fig. 3 shows a target display region after the flexible display panel is folded. As shown in Fig. 3, the target display region is located at a side of the folding line and can be presented to the user. A display control signal of the target display region is generated to control the target display region to display. The display of other regions of the flexible display panel that cannot be presented to the user after being deformed can be controlled to be turned off to save electrical energy.
  • the target display region may include at least a region that is not deformed at a side of the region where deformation occurs in the flexible display panel.
  • the display controller 2 can obtain the number of rows of pixel units in the target display region, generate a corresponding number of clock signals based on the number of rows of pixel units in the target display region, and control the target display region to display through the corresponding number of clock signals.
  • the preset number of pixel units in the deformed region can be controlled not to display, the plurality of rows of pixel units at one side of the deformed region is controlled to display, and the plurality of rows of pixel units at the other side of the deformed region is controlled not to display.
  • the display controller 2 identifies the resistive strain sensor whose resistance changed based on the digital signal outputted by the AD converter 50 and then identifies the deformed region in the flexible display panel 1.
  • a gate line counter 21 in the display controller 2 can be further used to obtain the number of the gate lines n in a non-deformed region at a side of the deformed region. That is, the number of rows n of the pixel units in the target display region.
  • a clock signal controller 22 in the display controller 2 correspondingly outputs n clock signals G1 to G (n) , as shown in Fig. 10, and input driving control signals of the n rows of pixel units to the GOA units of the corresponding n gate lines, thereby controlling the n rows of pixel units among the plurality of pixel units to display.
  • the flexible display panel 1 includes four deformable regions.
  • the resistive strain sensor 201 in region a is arranged corresponding to GOA 1 to GOA 20, that is, corresponding to the pixel units of the first row to the twentieth row.
  • the resistive strain sensor 202 in region b is arranged corresponding to GOA 21 to GOA 40, that is, corresponding to the pixel units of the twenty-first row to the fortieth row.
  • the resistive strain sensor 203 in region c is arranged corresponding to GOA 41 to GOA 60, that is, corresponding to the pixel units of the forty-first row to the sixtieth row.
  • the resistive strain sensor 204 in region d is arranged corresponding to GOA 61 to GOA 80, that is, corresponding to the pixel units of the sixty-first row to the eightieth row. If the display controller 2 receives a voltage signal generated by the resistive strain sensor 203 due to deformation of the resistive strain sensor 203, the display controller 2 can determine region c as the region where the deformation occurs. Assuming that the region of the flexible display panel 1 from the first row of pixel units to the deformed region is presented to the user after the deformation under this scenario, the display controller 60 can determine regions a and b as the target display region.
  • the gate line counter 21 counts the total number of the gate lines in the regions a and b to obtain a numerical value 40, and accordingly the clock signal controller 22 outputs 40 clock pulses to drive the pixel units of the first row to the fortieth row to display through GOA 1 to GOA 40.
  • a strain sensor 20 is arranged on the display substrate to conveniently and effectively detect the region where the deformation occurs in the flexible display panel.
  • a display controller is then utilized to determine a target display region based on the region where the deformation occurs so that a part of the flexible display panel can be controlled to display after the deformation, thereby meeting actual viewing demands of the user and reducing electric energy consumption simultaneously.
  • a display control method of the flexible display apparatus is further provided according to one embodiment of the present disclosure.
  • the display control method of the flexible display apparatus comprises the following steps :
  • step S1 the region where the deformation occurs in the flexible display panel is determined based on the detection signal.
  • the flexible display panel may include a plurality of deformable regions.
  • Each deformable region comprises a corresponding preset number of rows of pixel units.
  • a strain sensor is arranged corresponding to the preset number of rows of pixel units.
  • the strain sensor may be a resistive strain sensor.
  • the corresponding resistive strain sensor deforms and the resistance of the resistive strain sensor changes accordingly. Therefore, when the resistive strain sensor generates a detection signal based on the change of the resistance, the corresponding deformable region that deforms can be determined based on the detection signal.
  • the strain sensor can be respectively arranged in a non-display region at a side of the preset number of rows of pixel units, that is, the strain sensor does not overlap the positions of the pixel units, thereby facilitating arrangement and wiring of the strain sensor, and preventing the strain sensors, the pixel units and the driving circuit of the pixel units 10 from impacting one another with respect to electrical connection, electromagnetism, and heat dissipation and the like.
  • the resistive strain sensor 20 may be a strain resistance wire with a plurality of folding portions, and the plurality of folding portions are arranged in the row direction of the pixel units. That is, in the region where the corresponding preset number of rows of pixel units is located, the strain resistance wire can be arranged back and forth along the row and column directions of the pixel units, forming a strain sensor as shown in Fig. 5. There is a plurality of intersecting parts between the plurality of the folding portions and the gate lines. As such, when the region including the corresponding preset number of rows of pixel units is deformed, for example, folded along the gate lines, the positions of the plurality of the intersecting parts are deformed. As a result, deformation of the resistive strain sensor and variation of the resistance of the strain sensor is increased, thereby improving CH of the deformation detection.
  • a detection signal generated based on the change of the resistance can be converted to a conversion signal.
  • the Wheatstone bridge shown in Fig. 6 or Fig. 7 can be used to convert the detection signal of the change of the resistance of the strain sensor 20 to a current signal or a voltage signal.
  • a display controller such as a TCON or the like generally identifies the conversion signal to finally determine the region where the deformation occurs.
  • the current signal or the voltage signal obtained by the conversion is generally very small. Therefore, in one embodiment, the conversion signal can be subjected to amplification and AD conversion.
  • the obtained digital signal can be transmitted to the display controller such as a TCON. As such, the TCON or other display controllers can determine the region that deforms in the flexible display panel based on the received digital signals.
  • step S2 a target display region is determined based on the region where the deformation occurs in the flexible display panel, and a display control signal of the target display region is generated.
  • the region of the flexible display panel that can be presented to the user is considered as a target display region.
  • a display control signal of the target display region is generated to control the target display region to display.
  • the display of other regions of the flexible display panel that cannot be presented to the user after being deformed can be controlled to be turned off to save electrical energy.
  • the target display region can be composed of at least one region that is not deformed at a side of the region that is deformed in the flexible display panel.
  • the number of rows of pixel units in the target display region can be obtained, and a corresponding number of clock signals are generated based on the number of rows of pixel units in the target display region.
  • the target display region is controlled to display through the corresponding number of the clock signals. Therefore, the preset number of pixel units in the deformed region can be controlled not to display.
  • a plurality of rows of pixel units at one side of the deformed region is controlled to display, and a plurality of rows of pixel units at the other side of the deformed region is controlled not to display.
  • the change of the resistance of the resistive strain sensor 20 can be determined based on the digital signals so as to determine the region where deformation occurs in the flexible display panel. After the region where deformation occurs is determined, the number of the gate lines n in the region that does not deform at one side of the region where deformation occurs can be further obtained, that is, the number of rows of the pixel units n in the target display region. Then, n clock signals are outputted correspondingly, as shown in Fig. 10. Driving control signals of the n rows of pixel units are input to GOA units corresponding to the n gate lines, and the n rows of pixel units are controlled to display.
  • the flexible display panel 1 includes four deformable regions.
  • the resistive strain sensor 201 in region a is arranged corresponding to GOA 1 to GOA 20, that is, corresponding to the pixel units of the first row to the twentieth row.
  • the resistive strain sensor 202 in region b is arranged corresponding to GOA 21 to GOA 40, that is, corresponding to the pixel units of the twenty-first row to the fortieth row.
  • the resistive strain sensor 203 in region c is arranged corresponding to GOA 41 to GOA 60, that is, corresponding to the pixel units of the forty-first row to the sixtieth row.
  • the resistive strain sensor 204 in region d is arranged corresponding to GOA 61 to GOA 80, that is, corresponding to the pixel units of the sixty-first row to the eightieth row. If the display controller 2 receives a voltage signal generated by the resistive strain sensor 203 due to deformation of the resistive strain sensor 203, the display controller 2 can determine region c as the region where the deformation occurs. Assuming that the region of the flexible display panel 1 from the first row of pixel units to the deformed region is presented to the user after the deformation under this scenario, the display controller 60 can determine regions a and b as the target display region.
  • the gate line counter 21 counts the total number of the gate lines in the regions a and b to obtain a numerical value 40, and accordingly the clock signal controller 22 outputs 40 clock pulses to drive the pixel units of the first row to the fortieth row to display through GOA 1 to GOA 40.
  • the region where the deformation occurs in the flexible display panel is determined based on the detection signal.
  • the target display region is determined based on the region where the deformation occurs, so that a part of the flexible display panel can be controlled to display after the flexible display panel deforms, thereby meeting actual viewing demands of the user and reducing electric energy consumption simultaneously.
  • the terms ā€œcenter, ā€œ ā€œhorizontal, ā€ ā€œvertical, ā€œ ā€œlength, ā€œ ā€œwidth, ā€œ ā€œthickness, ā€œ ā€œupper, ā€œ ā€œlower, ā€œ ā€œfront, ā€œ ā€œback, ā€œ ā€œleft, ā€œ ā€œright, ā€œ ā€œvertical, ā€œ ā€œhorizontal, ā€œ ā€œtop, ā€œ bottom, ā€œ ā€œinner, ā€œ ā€œouter, ā€œ ā€œa clockwise direction, ā€ ā€œan anticlockwise direction, ā€ ā€œan axial direction, ā€ ā€œa radial direction, ā€ ā€œa circumferential direction, ā€ or the like are based on the orientation or positional relationship shown in the drawings.
  • first and second are for illustration purposes only and are not to be construed as indicating or implying relative importance or implied reference to the quantity of indicated technical features.
  • features defined by the terms ā€œfirstā€ and ā€œsecondā€ may explicitly or implicitly include one or more of the features.
  • the meaning of ā€œpluralā€ is two or more unless otherwise specifically and specifically defined.
  • the terms ā€œmounted, ā€œ ā€œconnected, ā€œ ā€œfixed, ā€œ and the like should be broadly understood unless expressly stated and limited otherwise. For example, they can be construed as fixedly connected or detachably connected or integrally connected. They can be mechanically connected or electrically connected and can be directly connected or indirectly connected through an intermediate medium. There can also be an internal connection between two elements. A person of ordinary skill in the art would understand the specific meaning of the terms in the disclosure in specific situations.
  • the two features can be in direct contact or indirect contact through an intermediate medium.
  • the first feature is "aboveā€ the second feature can be that the first feature is above or obliquely above the second feature, or only a height of the first feature is higher than that of the second feature.
  • That the first feature is "belowā€ the second feature can be that the first feature is below or obliquely below the second feature, or only indicates that a height of the first feature is smaller than that of the second feature.
  • references made to the term ā€œone embodiment, ā€ ā€œsome embodiments, ā€ and ā€œexemplary embodiments, ā€ ā€œexample, ā€ and ā€œspecific example, ā€ or ā€œsome examplesā€ and the like are intended to refer that specific features and structures, materials or characteristics described in connection with the embodiment or example that are included in at least one embodiment or example of the present disclosure.
  • the schematic expression of the terms does not necessarily refer to the same embodiment or example.
  • the specific features, structures, materials or characteristics described may be included in any suitable manner in any one or more embodiments or examples.

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Abstract

A flexible display panel is provided. The flexible display panel may include a display substrate (100), a plurality of pixel units (10) arranged in an array on the display substrate, and at least a strain sensor (20) on the display substrate. The strain sensor may be arranged corresponding to a region comprising at least one of the plurality of pixel units. The strain sensor may be configured to detect deformation in the region comprising at least one of the plurality of pixel units and to generate a detection signal.

Description

FLEXIBLEĀ DISPLAYĀ PANEL,Ā FLEXIBLEĀ DISPLAYĀ APPARATUS,Ā ANDĀ DISPLAYĀ CONTROLĀ METHODĀ THEREOF
CROSS-REFERENCEĀ TOĀ RELATEDĀ APPLICATIONS
ThisĀ applicationĀ claimsĀ benefitĀ ofĀ theĀ filingĀ dateĀ ofĀ ChineseĀ PatentĀ ApplicationĀ No.Ā 201710757232.5Ā filedĀ onĀ AugustĀ 29,Ā 2017,Ā theĀ disclosureĀ ofĀ whichĀ isĀ herebyĀ incorporatedĀ inĀ itsĀ entiretyĀ byĀ reference.
TECHNICALĀ FIELD
ThisĀ inventionĀ relatesĀ toĀ displayĀ technology,Ā andĀ moreĀ particularly,Ā toĀ aĀ flexibleĀ displayĀ panel,Ā aĀ flexibleĀ displayĀ apparatus,Ā andĀ aĀ displayĀ controlĀ methodĀ thereof.
BACKGROUND
AĀ flexibleĀ displayĀ apparatusĀ hasĀ certainĀ advantages.Ā ForĀ example,Ā itĀ canĀ beĀ bent,Ā folded,Ā andĀ manufacturedĀ intoĀ aĀ wideĀ varietyĀ ofĀ formsĀ andĀ theĀ like.Ā Thus,Ā theĀ flexibleĀ displayĀ apparatusĀ hasĀ beenĀ widelyĀ usedĀ inĀ aĀ pluralityĀ ofĀ fields.
ItĀ isĀ importantĀ toĀ controlĀ displayĀ ofĀ theĀ flexibleĀ displayĀ apparatusĀ inĀ responseĀ toĀ variousĀ formsĀ ofĀ deformationĀ ofĀ theĀ flexibleĀ displayĀ apparatus.Ā ThisĀ canĀ notĀ onlyĀ enrichĀ theĀ displayĀ modeĀ ofĀ theĀ flexibleĀ displayĀ apparatus,Ā butĀ alsoĀ meetĀ specialĀ displayĀ requirementsĀ underĀ variousĀ formsĀ ofĀ deformation.
BRIEFĀ SUMMARY
Accordingly,Ā oneĀ exampleĀ ofĀ theĀ presentĀ disclosureĀ isĀ aĀ flexibleĀ displayĀ panel.Ā TheĀ flexibleĀ displayĀ panelĀ mayĀ includeĀ aĀ displayĀ substrate,Ā aĀ pluralityĀ ofĀ pixelĀ unitsĀ arrangedĀ inĀ anĀ arrayĀ onĀ theĀ displayĀ substrate,Ā andĀ atĀ leastĀ oneĀ strainĀ sensorĀ onĀ theĀ displayĀ substrate.Ā TheĀ atĀ leastĀ oneĀ strainĀ sensorĀ mayĀ beĀ configuredĀ toĀ detectĀ deformationĀ ofĀ theĀ flexibleĀ displayĀ panel.Ā EachĀ ofĀ theĀ atĀ leastĀ oneĀ strainĀ sensorĀ mayĀ correspondĀ toĀ aĀ regionĀ ofĀ theĀ flexibleĀ displayĀ panelĀ comprisingĀ aĀ pluralityĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ andĀ mayĀ beĀ configuredĀ toĀ detectĀ theĀ deformationĀ inĀ theĀ regionĀ ofĀ theĀ flexibleĀ displayĀ panel.Ā TheĀ atĀ leastĀ oneĀ strainĀ sensorĀ mayĀ includeĀ aĀ pluralityĀ ofĀ strainĀ sensors,Ā andĀ theĀ pluralityĀ ofĀ theĀ strainĀ sensorsĀ mayĀ beĀ arrangedĀ inĀ aĀ non-displayĀ regionĀ alongĀ aĀ firstĀ direction.
TheĀ strainĀ sensorĀ mayĀ beĀ aĀ resistiveĀ strainĀ sensor.Ā TheĀ resistiveĀ strainĀ sensorĀ mayĀ includeĀ aĀ repeatedlyĀ foldedĀ strainĀ resistanceĀ wireĀ alongĀ theĀ firstĀ directionĀ withĀ aĀ pluralityĀ ofĀ foldingĀ portions,Ā andĀ theĀ pluralityĀ ofĀ foldingĀ portionsĀ mayĀ beĀ arrangedĀ alongĀ aĀ secondĀ direction.Ā TheĀ atĀ leastĀ oneĀ strainĀ sensorĀ inĀ theĀ non-displayĀ regionĀ mayĀ beĀ configuredĀ toĀ detectĀ theĀ deformationĀ ofĀ theĀ displayĀ panelĀ alongĀ theĀ secondĀ direction.
TheĀ flexibleĀ displayĀ panelĀ mayĀ furtherĀ includeĀ aĀ signalĀ acquisitionĀ circuitĀ coupledĀ toĀ theĀ atĀ leastĀ oneĀ strainĀ sensorĀ andĀ configuredĀ toĀ acquireĀ aĀ detectionĀ signalĀ fromĀ theĀ atĀ leastĀ oneĀ strainĀ sensor.
TheĀ flexibleĀ displayĀ panelĀ mayĀ furtherĀ includeĀ anĀ amplifierĀ circuitĀ coupledĀ toĀ theĀ signalĀ acquisitionĀ circuit,Ā andĀ configuredĀ toĀ receiveĀ andĀ amplifyĀ theĀ detectionĀ signalĀ andĀ anĀ ADĀ converterĀ circuitĀ coupledĀ toĀ theĀ amplifiedĀ circuitĀ andĀ configuredĀ toĀ convertĀ theĀ amplifiedĀ detectionĀ signalĀ toĀ aĀ digitalĀ signal.Ā TheĀ signalĀ acquisitionĀ circuitĀ mayĀ includeĀ aĀ firstĀ resistor,Ā aĀ secondĀ resistor,Ā aĀ thirdĀ resistor,Ā andĀ aĀ voltageĀ detector.Ā TheĀ firstĀ resistor,Ā theĀ secondĀ resistor,Ā theĀ thirdĀ resistor,Ā andĀ theĀ strainĀ sensorĀ mayĀ formĀ aĀ WheatstoneĀ bridge,Ā andĀ anĀ outputĀ terminalĀ ofĀ theĀ voltageĀ detectorĀ mayĀ outputĀ aĀ voltageĀ signal.Ā TheĀ signalĀ acquisitionĀ circuitĀ mayĀ includeĀ aĀ firstĀ resistor,Ā aĀ secondĀ resistor,Ā aĀ thirdĀ resistor,Ā andĀ aĀ currentĀ detector.Ā TheĀ firstĀ resistor,Ā theĀ secondĀ resistor,Ā theĀ thirdĀ resistor,Ā andĀ theĀ strainĀ sensorĀ mayĀ formĀ aĀ WheatstoneĀ bridge,Ā andĀ anĀ outputĀ terminalĀ ofĀ theĀ currentĀ detectorĀ mayĀ outputĀ aĀ currentĀ signal.
AnotherĀ exampleĀ ofĀ theĀ presentĀ disclosureĀ isĀ aĀ flexibleĀ displayĀ apparatus.Ā TheĀ flexibleĀ displayĀ apparatusĀ includeĀ theĀ flexibleĀ displayĀ panelĀ accordingĀ toĀ oneĀ embodimentĀ ofĀ theĀ presentĀ disclosure.Ā TheĀ flexibleĀ displayĀ apparatusĀ mayĀ furtherĀ includeĀ aĀ displayĀ controllerĀ coupledĀ toĀ theĀ atĀ leastĀ aĀ strainĀ sensor.Ā TheĀ displayĀ controllerĀ mayĀ beĀ configuredĀ toĀ determineĀ aĀ regionĀ whereĀ theĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panelĀ basedĀ onĀ theĀ detectionĀ signal,Ā toĀ determineĀ aĀ targetĀ displayĀ regionĀ basedĀ onĀ theĀ regionĀ whereĀ theĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panel,Ā andĀ toĀ controlĀ displayĀ ofĀ theĀ targetĀ displayĀ region.Ā TheĀ targetĀ displayĀ regionĀ mayĀ includeĀ atĀ leastĀ oneĀ non-deformedĀ regionĀ thatĀ isĀ atĀ oneĀ sideĀ ofĀ theĀ regionĀ whereĀ theĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panel.Ā TheĀ displayĀ controllerĀ mayĀ beĀ furtherĀ configuredĀ toĀ acquireĀ informationĀ aboutĀ theĀ numberĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ inĀ theĀ targetĀ displayĀ region,Ā toĀ generateĀ aĀ correspondingĀ numberĀ ofĀ clockĀ signalsĀ basedĀ onĀ theĀ numberĀ ofĀ rowsĀ ofĀ theĀ  pixelĀ unitsĀ inĀ theĀ targetĀ displayĀ region,Ā andĀ toĀ controlĀ theĀ targetĀ displayĀ regionĀ toĀ displayĀ throughĀ theĀ correspondingĀ numberĀ ofĀ theĀ clockĀ signals.
AnotherĀ exampleĀ ofĀ theĀ presentĀ disclosureĀ isĀ aĀ displayĀ controlĀ methodĀ ofĀ aĀ flexibleĀ displayĀ apparatus.Ā TheĀ displayĀ controlĀ methodĀ mayĀ includeĀ detectingĀ deformationĀ ofĀ theĀ flexibleĀ displayĀ panelĀ andĀ generatingĀ aĀ detectionĀ signal,Ā determiningĀ aĀ regionĀ whereĀ theĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panelĀ basedĀ onĀ theĀ detectionĀ signal,Ā determiningĀ aĀ targetĀ displayĀ regionĀ basedĀ onĀ theĀ regionĀ whereĀ theĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panel,Ā andĀ controllingĀ displayĀ ofĀ theĀ targetĀ displayĀ region.Ā TheĀ targetĀ displayĀ regionĀ mayĀ includeĀ atĀ leastĀ oneĀ non-deformedĀ regionĀ thatĀ isĀ atĀ oneĀ sideĀ ofĀ theĀ regionĀ whereĀ theĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panel.Ā ControllingĀ displayĀ ofĀ theĀ targetĀ displayĀ regionĀ mayĀ includeĀ acquiringĀ informationĀ aboutĀ theĀ numberĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ inĀ theĀ targetĀ displayĀ region,Ā generatingĀ aĀ correspondingĀ numberĀ ofĀ clockĀ signalsĀ basedĀ onĀ theĀ numberĀ ofĀ rowsĀ ofĀ theĀ pixelĀ unitsĀ inĀ theĀ targetĀ displayĀ region,Ā andĀ controllingĀ theĀ targetĀ displayĀ regionĀ toĀ displayĀ throughĀ theĀ correspondingĀ numberĀ ofĀ theĀ clockĀ signals.
BRIEFĀ DESCRIPTIONĀ OFĀ THEĀ DRAWINGS
TheĀ subjectĀ matterĀ whichĀ isĀ regardedĀ asĀ theĀ inventionĀ isĀ particularlyĀ pointedĀ outĀ andĀ distinctlyĀ claimedĀ inĀ theĀ claimsĀ atĀ theĀ conclusionĀ ofĀ theĀ specification.Ā TheĀ foregoingĀ andĀ otherĀ objects,Ā features,Ā andĀ advantagesĀ ofĀ theĀ inventionĀ areĀ apparentĀ fromĀ theĀ followingĀ detailedĀ descriptionĀ takenĀ inĀ conjunctionĀ withĀ theĀ accompanyingĀ drawingsĀ inĀ which:
Fig.Ā 1Ā isĀ aĀ schematicĀ structuralĀ diagramĀ ofĀ aĀ flexibleĀ displayĀ panelĀ accordingĀ toĀ anĀ embodimentĀ ofĀ theĀ presentĀ disclosure;
Fig.Ā 2Ā isĀ aĀ schematicĀ diagramĀ ofĀ aĀ rollableĀ flexibleĀ displayĀ panelĀ accordingĀ toĀ anĀ embodimentĀ ofĀ theĀ presentĀ disclosure;
Fig.Ā 3Ā isĀ aĀ schematicĀ diagramĀ ofĀ aĀ foldableĀ flexibleĀ displayĀ panelĀ accordingĀ toĀ anĀ embodimentĀ ofĀ theĀ presentĀ disclosure;
Fig.Ā 4Ā isĀ aĀ schematicĀ diagramĀ ofĀ aĀ bendableĀ flexibleĀ displayĀ panelĀ accordingĀ toĀ anĀ embodimentĀ ofĀ theĀ presentĀ disclosure;
Fig.Ā 5Ā isĀ aĀ schematicĀ structuralĀ diagramĀ ofĀ aĀ flexibleĀ displayĀ panelĀ accordingĀ toĀ anĀ embodimentĀ ofĀ theĀ presentĀ disclosure;
Fig.Ā 6Ā isĀ aĀ schematicĀ diagramĀ ofĀ aĀ circuitĀ ofĀ aĀ signalĀ acquisitionĀ apparatusĀ accordingĀ toĀ anĀ embodimentĀ ofĀ theĀ presentĀ disclosure;
Fig.Ā 7Ā isĀ aĀ schematicĀ diagramĀ ofĀ aĀ circuitĀ ofĀ aĀ signalĀ acquisitionĀ apparatusĀ accordingĀ toĀ anĀ embodimentĀ ofĀ theĀ presentĀ disclosure;
Fig.Ā 8Ā isĀ aĀ schematicĀ structuralĀ diagramĀ ofĀ aĀ flexibleĀ displayĀ apparatusĀ accordingĀ toĀ anĀ embodimentĀ ofĀ theĀ presentĀ disclosure;
Fig.Ā 9Ā isĀ aĀ schematicĀ blockĀ diagramĀ ofĀ aĀ flexibleĀ displayĀ apparatusĀ accordingĀ toĀ anĀ embodimentĀ ofĀ theĀ presentĀ disclosure;
Fig.Ā 10Ā isĀ aĀ timingĀ diagramĀ ofĀ clockĀ signalsĀ accordingĀ toĀ anĀ embodimentĀ ofĀ theĀ presentĀ disclosure;
Fig.Ā 11Ā isĀ aĀ schematicĀ structuralĀ diagramĀ ofĀ aĀ flexibleĀ displayĀ panelĀ accordingĀ toĀ anĀ embodimentĀ ofĀ theĀ presentĀ disclosure;Ā and
Fig.Ā 12Ā isĀ aĀ flowchartĀ ofĀ aĀ displayĀ controlĀ methodĀ ofĀ aĀ flexibleĀ displayĀ apparatusĀ accordingĀ toĀ anĀ embodimentĀ ofĀ theĀ presentĀ disclosure.
DETAILEDĀ DESCRIPTION
TheĀ presentĀ disclosureĀ willĀ beĀ describedĀ inĀ furtherĀ detailĀ withĀ referenceĀ toĀ theĀ accompanyingĀ drawingsĀ andĀ embodimentsĀ inĀ orderĀ toĀ provideĀ aĀ betterĀ understandingĀ byĀ thoseĀ skilledĀ inĀ theĀ artĀ ofĀ theĀ technicalĀ solutionsĀ ofĀ theĀ presentĀ disclosure.Ā ThroughoutĀ theĀ descriptionĀ ofĀ theĀ disclosure,Ā referenceĀ isĀ madeĀ toĀ Figs.Ā 1-12.Ā WhenĀ referringĀ toĀ theĀ figures,Ā likeĀ structuresĀ andĀ elementsĀ shownĀ throughoutĀ areĀ indicatedĀ withĀ likeĀ referenceĀ numerals.
AĀ flexibleĀ displayĀ panel,Ā aĀ flexibleĀ displayĀ apparatus,Ā andĀ aĀ displayĀ controlĀ methodĀ thereofĀ accordingĀ toĀ embodimentsĀ ofĀ theĀ presentĀ disclosureĀ areĀ describedĀ belowĀ withĀ referenceĀ toĀ theĀ accompanyingĀ drawings.
Fig.Ā 1Ā isĀ aĀ schematicĀ structuralĀ diagramĀ ofĀ aĀ flexibleĀ displayĀ panelĀ accordingĀ toĀ anĀ embodimentĀ ofĀ theĀ presentĀ disclosure.
InĀ oneĀ embodiment,Ā asĀ shownĀ inĀ Fig.Ā 1,Ā theĀ flexibleĀ displayĀ panelĀ 1Ā includesĀ aĀ displayĀ substrateĀ 100,Ā aĀ pluralityĀ ofĀ pixelĀ unitsĀ 10Ā arrangedĀ inĀ anĀ arrayĀ onĀ theĀ displayĀ substrateĀ 100,Ā andĀ aĀ strainĀ sensorĀ 20Ā arrangedĀ onĀ theĀ displayĀ substrateĀ 100Ā correspondingĀ toĀ aĀ regionĀ  includingĀ atĀ leastĀ oneĀ ofĀ theĀ pluralityĀ ofĀ pixelĀ unitsĀ 10.Ā TheĀ strainĀ sensorĀ 20Ā isĀ usedĀ forĀ detectingĀ deformationĀ inĀ theĀ regionĀ includingĀ atĀ leastĀ oneĀ ofĀ theĀ pluralityĀ ofĀ pixelĀ unitsĀ 10Ā andĀ generatingĀ aĀ detectionĀ signal.
InĀ oneĀ embodiment,Ā theĀ displayĀ substrateĀ 100Ā mayĀ beĀ madeĀ ofĀ aĀ plasticĀ filmĀ suchĀ asĀ aĀ polyimideĀ (PI)Ā filmĀ andĀ theĀ like,Ā andĀ isĀ capableĀ ofĀ beingĀ deformed.Ā InĀ oneĀ embodimentĀ ofĀ theĀ presentĀ disclosure,Ā asĀ shownĀ inĀ Fig.Ā 2,Ā theĀ flexibleĀ displayĀ panelĀ includingĀ theĀ displayĀ substrateĀ 100Ā isĀ aĀ rollableĀ flexibleĀ displayĀ panel.Ā ThatĀ is,Ā theĀ flexibleĀ displayĀ panelĀ includingĀ theĀ displayĀ substrateĀ 100Ā canĀ beĀ rolled.Ā InĀ anotherĀ embodiment,Ā asĀ shownĀ inĀ Fig.Ā 3,Ā theĀ flexibleĀ displayĀ panelĀ includingĀ theĀ displayĀ substrateĀ 100Ā mayĀ beĀ aĀ foldableĀ flexibleĀ displayĀ panel.Ā ThatĀ is,Ā theĀ flexibleĀ displayĀ panelĀ includingĀ theĀ displayĀ substrateĀ 100Ā canĀ beĀ folded.Ā InĀ oneĀ embodiment,Ā asĀ shownĀ inĀ Fig.Ā 4,Ā theĀ flexibleĀ displayĀ panelĀ includingĀ theĀ displayĀ substrateĀ 100Ā mayĀ beĀ aĀ bendableĀ flexibleĀ displayĀ panel.Ā ThatĀ is,Ā theĀ flexibleĀ displayĀ panelĀ includingĀ theĀ displayĀ substrateĀ 100Ā canĀ beĀ bent.Ā InĀ anotherĀ embodimentĀ ofĀ theĀ presentĀ disclosure,Ā aĀ flexibleĀ displayĀ panelĀ includingĀ theĀ displayĀ substrateĀ 100Ā isĀ capableĀ ofĀ otherĀ formsĀ ofĀ deformationĀ whichĀ areĀ generatedĀ accordingĀ toĀ actualĀ applicationĀ ofĀ theĀ flexibleĀ displayĀ panel.Ā ItĀ isĀ notĀ setĀ forthĀ herein.
InĀ oneĀ embodiment,Ā theĀ strainĀ sensorĀ 20Ā mayĀ beĀ aĀ resistiveĀ strainĀ sensor.Ā TheĀ resistiveĀ strainĀ sensorsĀ areĀ arrangedĀ respectivelyĀ correspondingĀ toĀ aĀ regionĀ includingĀ atĀ leastĀ oneĀ ofĀ theĀ pluralityĀ ofĀ pixelĀ unitsĀ 10.Ā WhenĀ aĀ regionĀ includingĀ atĀ leastĀ oneĀ ofĀ theĀ pluralityĀ ofĀ pixelĀ unitsĀ 10Ā isĀ deformed,Ā theĀ correspondingĀ resistiveĀ strainĀ sensorĀ isĀ alsoĀ deformed.Ā AĀ resistanceĀ ofĀ theĀ correspondingĀ resistiveĀ strainĀ sensorĀ isĀ changedĀ accordingly.Ā Therefore,Ā whenĀ theĀ correspondingĀ resistiveĀ strainĀ sensorĀ generatesĀ aĀ detectionĀ signalĀ basedĀ onĀ theĀ changeĀ ofĀ theĀ resistance,Ā theĀ regionĀ includingĀ atĀ leastĀ oneĀ ofĀ theĀ pluralityĀ ofĀ pixelĀ unitsĀ 10Ā thatĀ isĀ deformedĀ canĀ beĀ determinedĀ basedĀ onĀ theĀ detectionĀ signal.
InĀ oneĀ embodiment,Ā theĀ numberĀ ofĀ theĀ strainĀ sensorsĀ 20Ā mayĀ beĀ multiple.Ā AĀ pluralityĀ ofĀ strainĀ sensorsĀ 20Ā areĀ arrangedĀ inĀ differentĀ regionsĀ ofĀ theĀ flexibleĀ displayĀ panelĀ 1Ā toĀ detectĀ deformationĀ inĀ theĀ pluralityĀ ofĀ regionsĀ ofĀ theĀ flexibleĀ displayĀ panelĀ 1Ā respectively.
InĀ oneĀ embodiment,Ā asĀ shownĀ inĀ Fig.Ā 5,Ā theĀ displayĀ regionĀ ofĀ theĀ flexibleĀ displayĀ panelĀ 1Ā mayĀ includeĀ aĀ pluralityĀ ofĀ Gate-driverĀ OnĀ ArrayĀ (GOA)Ā unitsĀ arrangedĀ inĀ aĀ columnĀ direction.Ā EachĀ ofĀ theĀ GOAĀ unitsĀ correspondsĀ toĀ oneĀ rowĀ ofĀ pixelĀ unitsĀ andĀ oneĀ gateĀ line.Ā InĀ otherĀ words,Ā theĀ displayĀ regionĀ ofĀ theĀ flexibleĀ displayĀ panelĀ 1Ā mayĀ includeĀ multipleĀ rowsĀ ofĀ pixelĀ  units.Ā InĀ oneĀ embodiment,Ā asĀ shownĀ inĀ Fig.Ā 5,Ā eachĀ ofĀ theĀ pluralityĀ ofĀ strainĀ sensorsĀ 20Ā isĀ arrangedĀ respectivelyĀ correspondingĀ toĀ aĀ regionĀ includingĀ aĀ presetĀ numberĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ 10.Ā TheĀ pluralityĀ ofĀ strainĀ sensorsĀ 20Ā areĀ arrangedĀ inĀ theĀ columnĀ directionĀ ofĀ theĀ pixelĀ unitsĀ 10.Ā TheĀ numberĀ ofĀ rowsĀ ofĀ theĀ pixelĀ unitsĀ 10Ā correspondingĀ toĀ eachĀ ofĀ theĀ strainĀ sensorsĀ 20Ā mayĀ beĀ theĀ sameĀ orĀ not.Ā InĀ otherĀ words,Ā theĀ flexibleĀ displayĀ panelĀ 1Ā canĀ beĀ dividedĀ intoĀ aĀ pluralityĀ ofĀ regions.Ā EachĀ ofĀ theĀ pluralityĀ ofĀ regionsĀ includesĀ aĀ correspondingĀ presetĀ numberĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ 10.Ā AĀ strainĀ sensorĀ 20Ā isĀ arrangedĀ correspondingĀ toĀ eachĀ ofĀ theĀ pluralityĀ ofĀ regions.Ā EachĀ ofĀ theĀ strainĀ sensorsĀ 20Ā canĀ generateĀ aĀ detectionĀ signalĀ whenĀ theĀ flexibleĀ displayĀ panelĀ 1Ā isĀ stretchedĀ inĀ theĀ columnĀ directionĀ ofĀ theĀ pixelĀ unitsĀ 10.Ā Thus,Ā whenĀ theĀ flexibleĀ displayĀ panelĀ deformsĀ inĀ theĀ columnĀ directionĀ ofĀ theĀ pixelĀ unitsĀ 10,Ā theĀ regionĀ whereĀ deformationĀ occursĀ canĀ beĀ determinedĀ basedĀ onĀ theĀ regionĀ whichĀ theĀ strainĀ sensorĀ 20Ā thatĀ generatesĀ theĀ detectionĀ signalĀ amongĀ theĀ pluralityĀ ofĀ strainĀ sensorsĀ 20Ā correspondsĀ to.
EachĀ ofĀ theĀ gateĀ linesĀ inĀ theĀ flexibleĀ displayĀ panelĀ isĀ arrangedĀ correspondingĀ toĀ aĀ rowĀ ofĀ pixelĀ units.Ā EachĀ ofĀ theĀ dataĀ linesĀ inĀ theĀ flexibleĀ displayĀ panelĀ isĀ arrangedĀ correspondingĀ toĀ aĀ columnĀ ofĀ pixelĀ units.Ā ThatĀ is,Ā inĀ oneĀ embodimentĀ ofĀ theĀ presentĀ disclosure,Ā theĀ rowĀ directionĀ isĀ parallelĀ toĀ theĀ directionĀ ofĀ theĀ gateĀ lines.Ā TheĀ columnĀ directionĀ isĀ parallelĀ toĀ theĀ directionĀ ofĀ theĀ dataĀ lines.Ā SinceĀ theĀ strainĀ sensorsĀ 20Ā areĀ arrangedĀ inĀ theĀ columnĀ directionĀ ofĀ theĀ pixelĀ unitsĀ 10,Ā inĀ oneĀ embodiment,Ā whenĀ theĀ flexibleĀ displayĀ panelĀ isĀ folded,Ā bent,Ā orĀ rolledĀ alongĀ theĀ gateĀ lines,Ā theĀ strainĀ sensorsĀ 20Ā areĀ stretchedĀ andĀ generateĀ aĀ detectionĀ signal.Ā WhenĀ theĀ flexibleĀ displayĀ panelĀ isĀ folded,Ā bentĀ orĀ rolledĀ alongĀ theĀ dataĀ lines,Ā theĀ strainĀ sensorsĀ 20Ā doĀ notĀ generateĀ aĀ detectionĀ signal.
Further,Ā asĀ shownĀ inĀ Fig.Ā 5,Ā theĀ pluralityĀ ofĀ strainĀ sensorsĀ 20Ā mayĀ beĀ arrangedĀ inĀ aĀ non-displayĀ regionĀ atĀ aĀ sideĀ ofĀ aĀ presetĀ numberĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ respectively.Ā ThatĀ is,Ā theĀ strainĀ sensorsĀ 20Ā doĀ notĀ overlapĀ withĀ positionsĀ ofĀ theĀ pixelĀ unitsĀ 10,Ā therebyĀ facilitatingĀ arrangementĀ andĀ wiringĀ ofĀ theĀ strainĀ sensorsĀ 20Ā andĀ preventingĀ theĀ strainĀ sensorsĀ 20,Ā theĀ pixelĀ unitsĀ 10,Ā andĀ theĀ drivingĀ circuitĀ ofĀ theĀ pixelĀ unitsĀ 10Ā fromĀ impactingĀ oneĀ anotherĀ withĀ respectĀ toĀ electricalĀ connection,Ā electromagnetism,Ā andĀ heatĀ dissipationĀ andĀ theĀ like.
InĀ oneĀ embodiment,Ā asĀ shownĀ inĀ Fig.Ā 5,Ā theĀ resistiveĀ strainĀ sensorĀ 20Ā mayĀ beĀ aĀ strainĀ resistanceĀ wireĀ havingĀ aĀ pluralityĀ ofĀ foldingĀ portions.Ā TheĀ pluralityĀ ofĀ foldingĀ portionsĀ isĀ arrangedĀ inĀ aĀ rowĀ directionĀ ofĀ theĀ pixelĀ units.Ā ThatĀ is,Ā inĀ aĀ regionĀ correspondingĀ toĀ aĀ presetĀ  numberĀ ofĀ rowsĀ ofĀ pixelĀ units,Ā aĀ strainĀ resistanceĀ wireĀ canĀ beĀ arrangedĀ backĀ andĀ forthĀ alongĀ theĀ rowĀ andĀ columnĀ directionĀ ofĀ theĀ pixelĀ unitsĀ soĀ asĀ toĀ formĀ theĀ strainĀ sensorĀ 20,Ā asĀ shownĀ inĀ Fig.Ā 5.Ā ThereĀ isĀ aĀ pluralityĀ ofĀ intersectingĀ partsĀ betweenĀ theĀ pluralityĀ ofĀ theĀ foldingĀ portionsĀ andĀ theĀ gateĀ lines.Ā AsĀ such,Ā whenĀ theĀ regionĀ includingĀ theĀ correspondingĀ presetĀ numberĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ isĀ deformed,Ā forĀ example,Ā foldedĀ alongĀ theĀ gateĀ lines,Ā theĀ positionsĀ ofĀ theĀ pluralityĀ ofĀ theĀ intersectingĀ partsĀ areĀ deformed.Ā AsĀ aĀ result,Ā deformationĀ ofĀ theĀ resistiveĀ strainĀ sensorĀ andĀ variationĀ ofĀ theĀ resistanceĀ ofĀ theĀ strainĀ sensorĀ isĀ increased,Ā therebyĀ improvingĀ sensitivityĀ ofĀ theĀ deformationĀ detection.
ItĀ isĀ generallyĀ difficultĀ toĀ directlyĀ quantifyĀ andĀ obtainĀ aĀ changeĀ ofĀ resistance.Ā InĀ oneĀ embodiment,Ā theĀ detectionĀ signalĀ generatedĀ accordingĀ toĀ theĀ changeĀ ofĀ theĀ resistanceĀ valueĀ canĀ beĀ convertedĀ throughĀ aĀ signalĀ acquisitionĀ apparatusĀ 30Ā connectedĀ withĀ theĀ strainĀ sensorĀ 20Ā toĀ aĀ conversionĀ signal.
InĀ oneĀ embodiment,Ā asĀ shownĀ inĀ Fig.Ā 6,Ā theĀ signalĀ acquisitionĀ apparatusĀ 30Ā mayĀ compriseĀ aĀ firstĀ resistorĀ R1,Ā aĀ secondĀ resistorĀ R2,Ā aĀ thirdĀ resistorĀ R3,Ā andĀ aĀ voltageĀ detectorĀ Vt.Ā AĀ firstĀ terminalĀ ofĀ theĀ firstĀ resistorĀ R1Ā isĀ connectedĀ withĀ aĀ firstĀ terminalĀ ofĀ theĀ strainĀ sensorĀ 20.Ā AĀ nodeĀ ā€œbā€Ā isĀ presentĀ betweenĀ theĀ firstĀ terminalĀ ofĀ theĀ firstĀ resistorĀ R1Ā andĀ theĀ firstĀ terminalĀ ofĀ theĀ strainĀ sensorĀ 20.Ā AĀ firstĀ terminalĀ ofĀ theĀ secondĀ resistorĀ R2Ā isĀ connectedĀ withĀ aĀ secondĀ terminalĀ ofĀ theĀ strainĀ sensorĀ 20.Ā AĀ secondĀ terminalĀ ofĀ theĀ firstĀ resistorĀ R1Ā isĀ connectedĀ toĀ anĀ anodeĀ ofĀ aĀ presetĀ powerĀ supply,Ā andĀ aĀ firstĀ terminalĀ ofĀ theĀ secondĀ resistorĀ isĀ connectedĀ toĀ aĀ cathodeĀ ofĀ theĀ presetĀ powerĀ supply.Ā AĀ firstĀ terminalĀ ofĀ theĀ thirdĀ resistorĀ R3Ā isĀ connectedĀ toĀ aĀ secondĀ terminalĀ ofĀ theĀ firstĀ resistorĀ R1.Ā AĀ secondĀ terminalĀ ofĀ theĀ thirdĀ resistorĀ R3Ā isĀ connectedĀ toĀ aĀ secondĀ terminalĀ ofĀ theĀ secondĀ resistorĀ R2.Ā ThereĀ isĀ aĀ nodeĀ ā€œaā€Ā betweenĀ theĀ secondĀ terminalĀ ofĀ theĀ thirdĀ resistorĀ R3Ā andĀ theĀ secondĀ terminalĀ ofĀ theĀ secondĀ resistorĀ R2.Ā TheĀ firstĀ terminalĀ ofĀ theĀ voltageĀ detectorĀ VtĀ isĀ connectedĀ withĀ theĀ firstĀ terminalĀ ofĀ theĀ firstĀ resistorĀ R1.Ā TheĀ secondĀ terminalĀ ofĀ theĀ voltageĀ detectorĀ VtĀ isĀ connectedĀ withĀ theĀ secondĀ terminalĀ ofĀ theĀ secondĀ resistorĀ R2.Ā TheĀ outputĀ terminalĀ ofĀ theĀ voltageĀ detectorĀ VtĀ canĀ outputĀ aĀ voltageĀ signal.Ā ThatĀ is,Ā theĀ firstĀ resistorĀ R1,Ā theĀ secondĀ resistorĀ R2,Ā theĀ thirdĀ resistorĀ R3,Ā theĀ strainĀ sensorĀ 20Ā andĀ theĀ voltageĀ detectorĀ VtĀ canĀ formĀ aĀ WheatstoneĀ bridge.
AssumingĀ thatĀ theĀ resistancesĀ ofĀ theĀ firstĀ resistorĀ R1,Ā theĀ secondĀ resistorĀ R2Ā andĀ theĀ thirdĀ resistorĀ R3Ā areĀ RĀ respectively,Ā whenĀ theĀ strainĀ sensorĀ 20Ā isĀ notĀ deformed,Ā theĀ resistanceĀ  ofĀ theĀ strainĀ sensorĀ 20Ā isĀ Rs.Ā WhenĀ theĀ strainĀ sensorĀ 20Ā isĀ deformed,Ā theĀ amountĀ ofĀ changeĀ ofĀ theĀ resistanceĀ thereofĀ isĀ ā–³Rs.Ā TheĀ voltageĀ ofĀ theĀ presetĀ powerĀ supplyĀ isĀ Vi.Ā TheĀ voltageĀ outputtedĀ byĀ theĀ voltageĀ detectorĀ VtĀ canĀ beĀ calculatedĀ accordingĀ toĀ theĀ aboveĀ circuitĀ structureĀ ofĀ theĀ signalĀ acquisitionĀ apparatusĀ 30,Ā whichĀ isĀ theĀ voltageĀ differenceĀ betweenĀ theĀ voltageĀ ofĀ theĀ nodeĀ aĀ andĀ theĀ voltageĀ ofĀ theĀ nodeĀ b,Ā thatĀ is,Ā VoĀ =Ā Va-VbĀ =Ā 1/2Ā *Ā (R-Rs-ā–³RsĀ )Ā *ViĀ /Ā (RĀ +Ā RsĀ +Ā ā–³RsĀ )Ā .Ā SinceĀ R,Ā RsĀ andĀ ViĀ areĀ constants,Ā theĀ voltageĀ outputĀ VoĀ ofĀ theĀ voltageĀ detectorĀ VtĀ isĀ determinedĀ onlyĀ byĀ theĀ amountĀ ofĀ changeĀ ofĀ theĀ resistanceĀ ā–³RsĀ whenĀ theĀ strainĀ sensorĀ 20Ā deforms.
InĀ oneĀ embodiment,Ā asĀ shownĀ inĀ Fig.Ā 7,Ā theĀ signalĀ acquisitionĀ apparatusĀ 30Ā mayĀ compriseĀ aĀ firstĀ resistorĀ R1,Ā aĀ secondĀ resistorĀ R2,Ā aĀ thirdĀ resistorĀ R3,Ā andĀ aĀ currentĀ detectorĀ At.Ā AĀ firstĀ terminalĀ ofĀ theĀ firstĀ resistorĀ R1Ā isĀ connectedĀ withĀ aĀ firstĀ terminalĀ ofĀ theĀ strainĀ sensorĀ 20.Ā AĀ firstĀ terminalĀ ofĀ theĀ secondĀ resistorĀ R2Ā isĀ connectedĀ withĀ aĀ secondĀ terminalĀ ofĀ theĀ strainĀ sensorĀ 20.Ā AĀ secondĀ terminalĀ ofĀ theĀ firstĀ resistorĀ R1Ā isĀ connectedĀ toĀ anĀ anodeĀ ofĀ aĀ presetĀ powerĀ supply.Ā AĀ firstĀ terminalĀ ofĀ theĀ secondĀ resistorĀ isĀ connectedĀ toĀ aĀ cathodeĀ ofĀ theĀ presetĀ powerĀ supply.Ā AĀ firstĀ terminalĀ ofĀ theĀ thirdĀ resistorĀ R3Ā isĀ connectedĀ withĀ theĀ secondĀ terminalĀ ofĀ theĀ firstĀ resistorĀ R1.Ā AĀ secondĀ terminalĀ ofĀ theĀ thirdĀ resistorĀ R3Ā isĀ connectedĀ withĀ theĀ secondĀ terminalĀ ofĀ theĀ secondĀ resistorĀ R2.Ā AĀ firstĀ terminalĀ ofĀ theĀ currentĀ detectorĀ AtĀ isĀ connectedĀ withĀ theĀ firstĀ terminalĀ ofĀ theĀ firstĀ resistorĀ R1.Ā AĀ secondĀ terminalĀ ofĀ theĀ currentĀ detectorĀ AtĀ isĀ connectedĀ withĀ theĀ secondĀ terminalĀ ofĀ theĀ secondĀ resistorĀ R2.Ā TheĀ outputĀ terminalĀ ofĀ theĀ currentĀ detectorĀ AtĀ outputsĀ aĀ currentĀ signal.Ā ThatĀ is,Ā theĀ firstĀ resistorĀ R1,Ā theĀ secondĀ resistorĀ R2,Ā theĀ thirdĀ resistorĀ R3,Ā andĀ theĀ strainĀ sensorĀ canĀ formĀ aĀ WheatstoneĀ bridge.
Similarly,Ā theĀ currentĀ IoĀ outputtedĀ byĀ theĀ currentĀ detectorĀ AtĀ isĀ determinedĀ onlyĀ byĀ theĀ amountĀ ofĀ changeĀ ofĀ theĀ resistanceĀ ofĀ theĀ strainĀ sensorĀ ā–³RsĀ whenĀ theĀ strainĀ sensorĀ 20Ā deforms.
Thus,Ā withĀ theĀ WheatstoneĀ bridgeĀ shownĀ inĀ Fig.Ā 6Ā orĀ Fig.Ā 7,Ā aĀ signalĀ ofĀ aĀ changeĀ ofĀ resistanceĀ ofĀ theĀ strainĀ sensorĀ 20Ā canĀ beĀ convertedĀ intoĀ aĀ currentĀ signalĀ orĀ aĀ voltageĀ signal.
AfterĀ theĀ conversionĀ signalĀ isĀ obtained,Ā inĀ general,Ā aĀ displayĀ controller,Ā suchĀ asĀ aĀ TimeĀ ControlĀ RegisterĀ (TCON,Ā timer/counterĀ controlĀ register/logicĀ board)Ā isĀ usedĀ toĀ identifyĀ theĀ conversionĀ signalĀ toĀ finallyĀ determineĀ theĀ regionĀ whereĀ theĀ deformationĀ occurs.Ā TheĀ currentĀ orĀ voltageĀ signalĀ obtainedĀ byĀ theĀ conversionĀ isĀ generallyĀ veryĀ small.Ā Therefore,Ā inĀ oneĀ embodiment,Ā asĀ shownĀ inĀ Fig.Ā 8,Ā anĀ amplifierĀ 40Ā mayĀ beĀ connectedĀ withĀ theĀ signalĀ acquisitionĀ apparatusĀ 30Ā toĀ  amplifyĀ theĀ conversionĀ signalĀ obtainedĀ byĀ theĀ signalĀ acquisitionĀ apparatusĀ 30.Ā InĀ addition,Ā sinceĀ theĀ displayĀ controllerĀ suchĀ asĀ theĀ TCONĀ generallyĀ identifiesĀ digitalĀ signals,Ā asĀ shownĀ inĀ Fig.Ā 8,Ā anĀ AnalogĀ toĀ DigitalĀ (AD)Ā converterĀ 50Ā mayĀ beĀ connectedĀ withĀ theĀ amplifierĀ 40Ā toĀ performĀ theĀ ADĀ conversionĀ ofĀ theĀ amplifiedĀ conversionĀ signals.
InĀ oneĀ embodiment,Ā eachĀ ofĀ theĀ strainĀ sensorsĀ 20Ā mayĀ beĀ correspondinglyĀ providedĀ withĀ aĀ signalĀ acquisitionĀ apparatusĀ 30,Ā anĀ amplifierĀ 40,Ā andĀ anĀ ADĀ converterĀ 50.Ā InĀ anotherĀ embodiment,Ā eachĀ ofĀ theĀ strainĀ sensorsĀ 20Ā mayĀ beĀ correspondinglyĀ providedĀ withĀ aĀ signalĀ acquisitionĀ apparatusĀ 30.Ā TheĀ pluralityĀ ofĀ signalĀ acquisitionĀ apparatusesĀ 30Ā correspondingĀ toĀ theĀ pluralityĀ ofĀ strainĀ sensorsĀ 20Ā areĀ connectedĀ toĀ anĀ amplifierĀ 40.Ā ThatĀ is,Ā theĀ pluralityĀ ofĀ strainĀ sensorsĀ 20Ā sharesĀ oneĀ amplifierĀ 40Ā andĀ oneĀ ADĀ converterĀ 50.Ā TheĀ signalĀ acquisitionĀ apparatusesĀ 30,Ā theĀ amplifierĀ 40Ā andĀ theĀ ADĀ converterĀ 50Ā mayĀ beĀ disposedĀ onĀ theĀ displayĀ substrateĀ 100.Ā InĀ oneĀ embodiment,Ā theĀ signalĀ acquisitionĀ apparatusĀ 30,Ā theĀ amplifierĀ 40,Ā andĀ theĀ ADĀ converterĀ 50Ā mayĀ beĀ integratedĀ withĀ theĀ correspondingĀ strainĀ sensorĀ 20,Ā andĀ areĀ disposedĀ inĀ aĀ non-displayĀ regionĀ ofĀ theĀ displayĀ substrateĀ togetherĀ withĀ theĀ correspondingĀ strainĀ sensorĀ 20.Ā Thus,Ā theĀ displayĀ controllerĀ suchĀ asĀ theĀ TCONĀ canĀ determineĀ theĀ regionĀ whereĀ theĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panelĀ 1Ā basedĀ onĀ theĀ receivedĀ digitalĀ signal,Ā therebyĀ facilitatingĀ furtherĀ displayĀ controlĀ ofĀ theĀ flexibleĀ displayĀ panelĀ 1.
InĀ conclusion,Ā accordingĀ toĀ theĀ embodimentĀ ofĀ theĀ presentĀ disclosure,Ā byĀ arrangingĀ strainĀ sensorsĀ onĀ theĀ displayĀ substrate,Ā theĀ deformedĀ regionĀ ofĀ theĀ flexibleĀ displayĀ panelĀ canĀ beĀ convenientlyĀ andĀ effectivelyĀ detected.
AnotherĀ exampleĀ ofĀ theĀ presentĀ disclosureĀ isĀ aĀ flexibleĀ displayĀ apparatus.Ā TheĀ flexibleĀ displayĀ apparatusĀ includesĀ theĀ flexibleĀ displayĀ panelĀ 1Ā providedĀ accordingĀ toĀ oneĀ embodimentĀ ofĀ theĀ presentĀ disclosure.
InĀ oneĀ embodiment,Ā asĀ shownĀ inĀ Fig.Ā 9,Ā theĀ flexibleĀ displayĀ apparatusĀ furtherĀ comprisesĀ aĀ displayĀ controllerĀ 2.Ā TheĀ displayĀ controllerĀ 2Ā isĀ connectedĀ withĀ theĀ strainĀ sensorĀ 20.Ā TheĀ displayĀ controllerĀ 2Ā isĀ usedĀ forĀ determiningĀ theĀ regionĀ whereĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panelĀ 1Ā basedĀ onĀ theĀ detectionĀ signalĀ generatedĀ byĀ theĀ strainĀ sensorĀ 20;Ā determiningĀ aĀ targetĀ displayĀ regionĀ basedĀ onĀ theĀ regionĀ whereĀ theĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panelĀ 1;Ā andĀ generatingĀ aĀ displayĀ controlĀ signalĀ ofĀ theĀ targetĀ displayĀ region.
AfterĀ theĀ flexibleĀ displayĀ panelĀ isĀ deformed,Ā especiallyĀ whenĀ aĀ large-amplitudeĀ ofĀ deformationĀ occurs,Ā suchĀ asĀ theĀ panelĀ beingĀ folded,Ā itĀ isĀ difficultĀ forĀ theĀ completeĀ displayĀ regionĀ ofĀ theĀ flexibleĀ displayĀ panelĀ toĀ beĀ presentedĀ toĀ theĀ userĀ atĀ theĀ sameĀ time.Ā Therefore,Ā afterĀ theĀ flexibleĀ displayĀ panelĀ isĀ deformed,Ā theĀ regionĀ ofĀ theĀ flexibleĀ displayĀ panelĀ thatĀ canĀ beĀ presentedĀ toĀ theĀ userĀ isĀ consideredĀ asĀ aĀ targetĀ displayĀ region.Ā Fig.Ā 3Ā showsĀ aĀ targetĀ displayĀ regionĀ afterĀ theĀ flexibleĀ displayĀ panelĀ isĀ folded.Ā AsĀ shownĀ inĀ Fig.Ā 3,Ā theĀ targetĀ displayĀ regionĀ isĀ locatedĀ atĀ aĀ sideĀ ofĀ theĀ foldingĀ lineĀ andĀ canĀ beĀ presentedĀ toĀ theĀ user.Ā AĀ displayĀ controlĀ signalĀ ofĀ theĀ targetĀ displayĀ regionĀ isĀ generatedĀ toĀ controlĀ theĀ targetĀ displayĀ regionĀ toĀ display.Ā TheĀ displayĀ ofĀ otherĀ regionsĀ ofĀ theĀ flexibleĀ displayĀ panelĀ thatĀ cannotĀ beĀ presentedĀ toĀ theĀ userĀ afterĀ beingĀ deformedĀ canĀ beĀ controlledĀ toĀ beĀ turnedĀ offĀ toĀ saveĀ electricalĀ energy.
InĀ oneĀ embodiment,Ā theĀ targetĀ displayĀ regionĀ mayĀ includeĀ atĀ leastĀ aĀ regionĀ thatĀ isĀ notĀ deformedĀ atĀ aĀ sideĀ ofĀ theĀ regionĀ whereĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panel.
AfterĀ theĀ targetĀ displayĀ regionĀ isĀ determined,Ā theĀ displayĀ controllerĀ 2Ā canĀ obtainĀ theĀ numberĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ inĀ theĀ targetĀ displayĀ region,Ā generateĀ aĀ correspondingĀ numberĀ ofĀ clockĀ signalsĀ basedĀ onĀ theĀ numberĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ inĀ theĀ targetĀ displayĀ region,Ā andĀ controlĀ theĀ targetĀ displayĀ regionĀ toĀ displayĀ throughĀ theĀ correspondingĀ numberĀ ofĀ clockĀ signals.Ā AsĀ such,Ā theĀ presetĀ numberĀ ofĀ pixelĀ unitsĀ inĀ theĀ deformedĀ regionĀ canĀ beĀ controlledĀ notĀ toĀ display,Ā theĀ pluralityĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ atĀ oneĀ sideĀ ofĀ theĀ deformedĀ regionĀ isĀ controlledĀ toĀ display,Ā andĀ theĀ pluralityĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ atĀ theĀ otherĀ sideĀ ofĀ theĀ deformedĀ regionĀ isĀ controlledĀ notĀ toĀ display.
InĀ oneĀ embodiment,Ā asĀ shownĀ inĀ Fig.Ā 8,Ā theĀ displayĀ controllerĀ 2Ā identifiesĀ theĀ resistiveĀ strainĀ sensorĀ whoseĀ resistanceĀ changedĀ basedĀ onĀ theĀ digitalĀ signalĀ outputtedĀ byĀ theĀ ADĀ converterĀ 50Ā andĀ thenĀ identifiesĀ theĀ deformedĀ regionĀ inĀ theĀ flexibleĀ displayĀ panelĀ 1.Ā AfterĀ theĀ deformedĀ regionĀ isĀ identified,Ā aĀ gateĀ lineĀ counterĀ 21Ā inĀ theĀ displayĀ controllerĀ 2Ā canĀ beĀ furtherĀ usedĀ toĀ obtainĀ theĀ numberĀ ofĀ theĀ gateĀ linesĀ nĀ inĀ aĀ non-deformedĀ regionĀ atĀ aĀ sideĀ ofĀ theĀ deformedĀ region.Ā ThatĀ is,Ā theĀ numberĀ ofĀ rowsĀ nĀ ofĀ theĀ pixelĀ unitsĀ inĀ theĀ targetĀ displayĀ region.Ā Then,Ā aĀ clockĀ signalĀ controllerĀ 22Ā inĀ theĀ displayĀ controllerĀ 2Ā correspondinglyĀ outputsĀ nĀ clockĀ signalsĀ G1Ā toĀ GĀ (n)Ā ,Ā asĀ shownĀ inĀ Fig.Ā 10,Ā andĀ inputĀ drivingĀ controlĀ signalsĀ ofĀ theĀ nĀ rowsĀ ofĀ pixelĀ unitsĀ toĀ theĀ GOAĀ unitsĀ ofĀ theĀ correspondingĀ nĀ gateĀ lines,Ā therebyĀ controllingĀ theĀ nĀ rowsĀ ofĀ pixelĀ unitsĀ amongĀ theĀ pluralityĀ ofĀ pixelĀ unitsĀ toĀ display.
InĀ oneĀ embodiment,Ā asĀ shownĀ inĀ Fig.Ā 11,Ā theĀ flexibleĀ displayĀ panelĀ 1Ā includesĀ fourĀ deformableĀ regions.Ā TheĀ resistiveĀ strainĀ sensorĀ 201Ā inĀ regionĀ aĀ isĀ arrangedĀ correspondingĀ toĀ GOAĀ 1Ā toĀ GOAĀ 20,Ā thatĀ is,Ā correspondingĀ toĀ theĀ pixelĀ unitsĀ ofĀ theĀ firstĀ rowĀ toĀ theĀ twentiethĀ row.Ā TheĀ resistiveĀ strainĀ sensorĀ 202Ā inĀ regionĀ bĀ isĀ arrangedĀ correspondingĀ toĀ GOAĀ 21Ā toĀ GOAĀ 40,Ā thatĀ is,Ā correspondingĀ toĀ theĀ pixelĀ unitsĀ ofĀ theĀ twenty-firstĀ rowĀ toĀ theĀ fortiethĀ row.Ā TheĀ resistiveĀ strainĀ sensorĀ 203Ā inĀ regionĀ cĀ isĀ arrangedĀ correspondingĀ toĀ GOAĀ 41Ā toĀ GOAĀ 60,Ā thatĀ is,Ā correspondingĀ toĀ theĀ pixelĀ unitsĀ ofĀ theĀ forty-firstĀ rowĀ toĀ theĀ sixtiethĀ row.Ā TheĀ resistiveĀ strainĀ sensorĀ 204Ā inĀ regionĀ dĀ isĀ arrangedĀ correspondingĀ toĀ GOAĀ 61Ā toĀ GOAĀ 80,Ā thatĀ is,Ā correspondingĀ toĀ theĀ pixelĀ unitsĀ ofĀ theĀ sixty-firstĀ rowĀ toĀ theĀ eightiethĀ row.Ā IfĀ theĀ displayĀ controllerĀ 2Ā receivesĀ aĀ voltageĀ signalĀ generatedĀ byĀ theĀ resistiveĀ strainĀ sensorĀ 203Ā dueĀ toĀ deformationĀ ofĀ theĀ resistiveĀ strainĀ sensorĀ 203,Ā theĀ displayĀ controllerĀ 2Ā canĀ determineĀ regionĀ cĀ asĀ theĀ regionĀ whereĀ theĀ deformationĀ occurs.Ā AssumingĀ thatĀ theĀ regionĀ ofĀ theĀ flexibleĀ displayĀ panelĀ 1Ā fromĀ theĀ firstĀ rowĀ ofĀ pixelĀ unitsĀ toĀ theĀ deformedĀ regionĀ isĀ presentedĀ toĀ theĀ userĀ afterĀ theĀ deformationĀ underĀ thisĀ scenario,Ā theĀ displayĀ controllerĀ 60Ā canĀ determineĀ regionsĀ aĀ andĀ bĀ asĀ theĀ targetĀ displayĀ region.Ā TheĀ gateĀ lineĀ counterĀ 21Ā countsĀ theĀ totalĀ numberĀ ofĀ theĀ gateĀ linesĀ inĀ theĀ regionsĀ aĀ andĀ bĀ toĀ obtainĀ aĀ numericalĀ valueĀ 40,Ā andĀ accordinglyĀ theĀ clockĀ signalĀ controllerĀ 22Ā outputsĀ 40Ā clockĀ pulsesĀ toĀ driveĀ theĀ pixelĀ unitsĀ ofĀ theĀ firstĀ rowĀ toĀ theĀ fortiethĀ rowĀ toĀ displayĀ throughĀ GOAĀ 1Ā toĀ GOAĀ 40.
InĀ theĀ flexibleĀ displayĀ apparatusĀ accordingĀ toĀ oneĀ embodimentĀ ofĀ theĀ presentĀ disclosure,Ā aĀ strainĀ sensorĀ 20Ā isĀ arrangedĀ onĀ theĀ displayĀ substrateĀ toĀ convenientlyĀ andĀ effectivelyĀ detectĀ theĀ regionĀ whereĀ theĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panel.Ā AĀ displayĀ controllerĀ isĀ thenĀ utilizedĀ toĀ determineĀ aĀ targetĀ displayĀ regionĀ basedĀ onĀ theĀ regionĀ whereĀ theĀ deformationĀ occursĀ soĀ thatĀ aĀ partĀ ofĀ theĀ flexibleĀ displayĀ panelĀ canĀ beĀ controlledĀ toĀ displayĀ afterĀ theĀ deformation,Ā therebyĀ meetingĀ actualĀ viewingĀ demandsĀ ofĀ theĀ userĀ andĀ reducingĀ electricĀ energyĀ consumptionĀ simultaneously.
BasedĀ onĀ theĀ aboveĀ embodiment,Ā aĀ displayĀ controlĀ methodĀ ofĀ theĀ flexibleĀ displayĀ apparatusĀ isĀ furtherĀ providedĀ accordingĀ toĀ oneĀ embodimentĀ ofĀ theĀ presentĀ disclosure.
AsĀ shownĀ inĀ Fig.Ā 12,Ā theĀ displayĀ controlĀ methodĀ ofĀ theĀ flexibleĀ displayĀ apparatusĀ accordingĀ toĀ theĀ embodimentĀ ofĀ theĀ presentĀ disclosureĀ comprisesĀ theĀ followingĀ stepsĀ :
InĀ stepĀ S1,Ā theĀ regionĀ whereĀ theĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panelĀ isĀ determinedĀ basedĀ onĀ theĀ detectionĀ signal.
InĀ oneĀ embodiment,Ā theĀ flexibleĀ displayĀ panelĀ mayĀ includeĀ aĀ pluralityĀ ofĀ deformableĀ regions.Ā EachĀ deformableĀ regionĀ comprisesĀ aĀ correspondingĀ presetĀ numberĀ ofĀ rowsĀ ofĀ pixelĀ units.Ā AĀ strainĀ sensorĀ isĀ arrangedĀ correspondingĀ toĀ theĀ presetĀ numberĀ ofĀ rowsĀ ofĀ pixelĀ units.
InĀ oneĀ embodiment,Ā theĀ strainĀ sensorĀ mayĀ beĀ aĀ resistiveĀ strainĀ sensor.Ā WhenĀ aĀ certainĀ deformableĀ regionĀ deforms,Ā theĀ correspondingĀ resistiveĀ strainĀ sensorĀ deformsĀ andĀ theĀ resistanceĀ ofĀ theĀ resistiveĀ strainĀ sensorĀ changesĀ accordingly.Ā Therefore,Ā whenĀ theĀ resistiveĀ strainĀ sensorĀ generatesĀ aĀ detectionĀ signalĀ basedĀ onĀ theĀ changeĀ ofĀ theĀ resistance,Ā theĀ correspondingĀ deformableĀ regionĀ thatĀ deformsĀ canĀ beĀ determinedĀ basedĀ onĀ theĀ detectionĀ signal.
AsĀ shownĀ inĀ Fig.Ā 5,Ā theĀ strainĀ sensorĀ canĀ beĀ respectivelyĀ arrangedĀ inĀ aĀ non-displayĀ regionĀ atĀ aĀ sideĀ ofĀ theĀ presetĀ numberĀ ofĀ rowsĀ ofĀ pixelĀ units,Ā thatĀ is,Ā theĀ strainĀ sensorĀ doesĀ notĀ overlapĀ theĀ positionsĀ ofĀ theĀ pixelĀ units,Ā therebyĀ facilitatingĀ arrangementĀ andĀ wiringĀ ofĀ theĀ strainĀ sensor,Ā andĀ preventingĀ theĀ strainĀ sensors,Ā theĀ pixelĀ unitsĀ andĀ theĀ drivingĀ circuitĀ ofĀ theĀ pixelĀ unitsĀ 10Ā fromĀ impactingĀ oneĀ anotherĀ withĀ respectĀ toĀ electricalĀ connection,Ā electromagnetism,Ā andĀ heatĀ dissipationĀ andĀ theĀ like.
InĀ oneĀ embodiment,Ā asĀ shownĀ inĀ Fig.Ā 5,Ā theĀ resistiveĀ strainĀ sensorĀ 20Ā mayĀ beĀ aĀ strainĀ resistanceĀ wireĀ withĀ aĀ pluralityĀ ofĀ foldingĀ portions,Ā andĀ theĀ pluralityĀ ofĀ foldingĀ portionsĀ areĀ arrangedĀ inĀ theĀ rowĀ directionĀ ofĀ theĀ pixelĀ units.Ā ThatĀ is,Ā inĀ theĀ regionĀ whereĀ theĀ correspondingĀ presetĀ numberĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ isĀ located,Ā theĀ strainĀ resistanceĀ wireĀ canĀ beĀ arrangedĀ backĀ andĀ forthĀ alongĀ theĀ rowĀ andĀ columnĀ directionsĀ ofĀ theĀ pixelĀ units,Ā formingĀ aĀ strainĀ sensorĀ asĀ shownĀ inĀ Fig.Ā 5.Ā ThereĀ isĀ aĀ pluralityĀ ofĀ intersectingĀ partsĀ betweenĀ theĀ pluralityĀ ofĀ theĀ foldingĀ portionsĀ andĀ theĀ gateĀ lines.Ā AsĀ such,Ā whenĀ theĀ regionĀ includingĀ theĀ correspondingĀ presetĀ numberĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ isĀ deformed,Ā forĀ example,Ā foldedĀ alongĀ theĀ gateĀ lines,Ā theĀ positionsĀ ofĀ theĀ pluralityĀ ofĀ theĀ intersectingĀ partsĀ areĀ deformed.Ā AsĀ aĀ result,Ā deformationĀ ofĀ theĀ resistiveĀ strainĀ sensorĀ andĀ variationĀ ofĀ theĀ resistanceĀ ofĀ theĀ strainĀ sensorĀ isĀ increased,Ā therebyĀ improvingĀ sensitivityĀ ofĀ theĀ deformationĀ detection.
ItĀ isĀ generallyĀ difficultĀ toĀ directlyĀ quantifyĀ andĀ obtainĀ theĀ amountĀ ofĀ changeĀ ofĀ theĀ resistance.Ā Therefore,Ā aĀ detectionĀ signalĀ generatedĀ basedĀ onĀ theĀ changeĀ ofĀ theĀ resistanceĀ canĀ beĀ convertedĀ toĀ aĀ conversionĀ signal.Ā InĀ oneĀ embodiment,Ā theĀ WheatstoneĀ bridgeĀ shownĀ inĀ Fig.Ā 6Ā orĀ  Fig.Ā 7Ā canĀ beĀ usedĀ toĀ convertĀ theĀ detectionĀ signalĀ ofĀ theĀ changeĀ ofĀ theĀ resistanceĀ ofĀ theĀ strainĀ sensorĀ 20Ā toĀ aĀ currentĀ signalĀ orĀ aĀ voltageĀ signal.
AfterĀ theĀ conversionĀ signalĀ isĀ obtained,Ā aĀ displayĀ controllerĀ suchĀ asĀ aĀ TCONĀ orĀ theĀ likeĀ generallyĀ identifiesĀ theĀ conversionĀ signalĀ toĀ finallyĀ determineĀ theĀ regionĀ whereĀ theĀ deformationĀ occurs.Ā TheĀ currentĀ signalĀ orĀ theĀ voltageĀ signalĀ obtainedĀ byĀ theĀ conversionĀ isĀ generallyĀ veryĀ small.Ā Therefore,Ā inĀ oneĀ embodiment,Ā theĀ conversionĀ signalĀ canĀ beĀ subjectedĀ toĀ amplificationĀ andĀ ADĀ conversion.Ā TheĀ obtainedĀ digitalĀ signalĀ canĀ beĀ transmittedĀ toĀ theĀ displayĀ controllerĀ suchĀ asĀ aĀ TCON.Ā AsĀ such,Ā theĀ TCONĀ orĀ otherĀ displayĀ controllersĀ canĀ determineĀ theĀ regionĀ thatĀ deformsĀ inĀ theĀ flexibleĀ displayĀ panelĀ basedĀ onĀ theĀ receivedĀ digitalĀ signals.
InĀ stepĀ S2,Ā aĀ targetĀ displayĀ regionĀ isĀ determinedĀ basedĀ onĀ theĀ regionĀ whereĀ theĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panel,Ā andĀ aĀ displayĀ controlĀ signalĀ ofĀ theĀ targetĀ displayĀ regionĀ isĀ generated.
AfterĀ theĀ flexibleĀ displayĀ panelĀ isĀ deformed,Ā especiallyĀ whenĀ aĀ large-amplitudeĀ ofĀ deformationĀ occurs,Ā suchĀ asĀ theĀ panelĀ beingĀ folded,Ā itĀ isĀ difficultĀ forĀ theĀ completeĀ displayĀ regionĀ ofĀ theĀ flexibleĀ displayĀ panelĀ toĀ beĀ presentedĀ toĀ theĀ userĀ atĀ theĀ sameĀ time.Ā Therefore,Ā afterĀ theĀ flexibleĀ displayĀ panelĀ isĀ deformed,Ā theĀ regionĀ ofĀ theĀ flexibleĀ displayĀ panelĀ thatĀ canĀ beĀ presentedĀ toĀ theĀ userĀ isĀ consideredĀ asĀ aĀ targetĀ displayĀ region.Ā AĀ displayĀ controlĀ signalĀ ofĀ theĀ targetĀ displayĀ regionĀ isĀ generatedĀ toĀ controlĀ theĀ targetĀ displayĀ regionĀ toĀ display.Ā TheĀ displayĀ ofĀ otherĀ regionsĀ ofĀ theĀ flexibleĀ displayĀ panelĀ thatĀ cannotĀ beĀ presentedĀ toĀ theĀ userĀ afterĀ beingĀ deformedĀ canĀ beĀ controlledĀ toĀ beĀ turnedĀ offĀ toĀ saveĀ electricalĀ energy.
InĀ oneĀ embodiment,Ā theĀ targetĀ displayĀ regionĀ canĀ beĀ composedĀ ofĀ atĀ leastĀ oneĀ regionĀ thatĀ isĀ notĀ deformedĀ atĀ aĀ sideĀ ofĀ theĀ regionĀ thatĀ isĀ deformedĀ inĀ theĀ flexibleĀ displayĀ panel.
AfterĀ theĀ targetĀ displayĀ regionĀ isĀ determined,Ā theĀ numberĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ inĀ theĀ targetĀ displayĀ regionĀ canĀ beĀ obtained,Ā andĀ aĀ correspondingĀ numberĀ ofĀ clockĀ signalsĀ areĀ generatedĀ basedĀ onĀ theĀ numberĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ inĀ theĀ targetĀ displayĀ region.Ā TheĀ targetĀ displayĀ regionĀ isĀ controlledĀ toĀ displayĀ throughĀ theĀ correspondingĀ numberĀ ofĀ theĀ clockĀ signals.Ā Therefore,Ā theĀ presetĀ numberĀ ofĀ pixelĀ unitsĀ inĀ theĀ deformedĀ regionĀ canĀ beĀ controlledĀ notĀ toĀ display.Ā AĀ pluralityĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ atĀ oneĀ sideĀ ofĀ theĀ deformedĀ regionĀ isĀ controlledĀ toĀ display,Ā andĀ aĀ pluralityĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ atĀ theĀ otherĀ sideĀ ofĀ theĀ deformedĀ regionĀ isĀ controlledĀ notĀ toĀ display.
InĀ oneĀ embodiment,Ā theĀ changeĀ ofĀ theĀ resistanceĀ ofĀ theĀ resistiveĀ strainĀ sensorĀ 20Ā canĀ beĀ determinedĀ basedĀ onĀ theĀ digitalĀ signalsĀ soĀ asĀ toĀ determineĀ theĀ regionĀ whereĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panel.Ā AfterĀ theĀ regionĀ whereĀ deformationĀ occursĀ isĀ determined,Ā theĀ numberĀ ofĀ theĀ gateĀ linesĀ nĀ inĀ theĀ regionĀ thatĀ doesĀ notĀ deformĀ atĀ oneĀ sideĀ ofĀ theĀ regionĀ whereĀ deformationĀ occursĀ canĀ beĀ furtherĀ obtained,Ā thatĀ is,Ā theĀ numberĀ ofĀ rowsĀ ofĀ theĀ pixelĀ unitsĀ nĀ inĀ theĀ targetĀ displayĀ region.Ā Then,Ā nĀ clockĀ signalsĀ areĀ outputtedĀ correspondingly,Ā asĀ shownĀ inĀ Fig.Ā 10.Ā DrivingĀ controlĀ signalsĀ ofĀ theĀ nĀ rowsĀ ofĀ pixelĀ unitsĀ areĀ inputĀ toĀ GOAĀ unitsĀ correspondingĀ toĀ theĀ nĀ gateĀ lines,Ā andĀ theĀ nĀ rowsĀ ofĀ pixelĀ unitsĀ areĀ controlledĀ toĀ display.
InĀ oneĀ embodiment,Ā asĀ shownĀ inĀ Fig.Ā 11,Ā theĀ flexibleĀ displayĀ panelĀ 1Ā includesĀ fourĀ deformableĀ regions.Ā TheĀ resistiveĀ strainĀ sensorĀ 201Ā inĀ regionĀ aĀ isĀ arrangedĀ correspondingĀ toĀ GOAĀ 1Ā toĀ GOAĀ 20,Ā thatĀ is,Ā correspondingĀ toĀ theĀ pixelĀ unitsĀ ofĀ theĀ firstĀ rowĀ toĀ theĀ twentiethĀ row.Ā TheĀ resistiveĀ strainĀ sensorĀ 202Ā inĀ regionĀ bĀ isĀ arrangedĀ correspondingĀ toĀ GOAĀ 21Ā toĀ GOAĀ 40,Ā thatĀ is,Ā correspondingĀ toĀ theĀ pixelĀ unitsĀ ofĀ theĀ twenty-firstĀ rowĀ toĀ theĀ fortiethĀ row.Ā TheĀ resistiveĀ strainĀ sensorĀ 203Ā inĀ regionĀ cĀ isĀ arrangedĀ correspondingĀ toĀ GOAĀ 41Ā toĀ GOAĀ 60,Ā thatĀ is,Ā correspondingĀ toĀ theĀ pixelĀ unitsĀ ofĀ theĀ forty-firstĀ rowĀ toĀ theĀ sixtiethĀ row.Ā TheĀ resistiveĀ strainĀ sensorĀ 204Ā inĀ regionĀ dĀ isĀ arrangedĀ correspondingĀ toĀ GOAĀ 61Ā toĀ GOAĀ 80,Ā thatĀ is,Ā correspondingĀ toĀ theĀ pixelĀ unitsĀ ofĀ theĀ sixty-firstĀ rowĀ toĀ theĀ eightiethĀ row.Ā IfĀ theĀ displayĀ controllerĀ 2Ā receivesĀ aĀ voltageĀ signalĀ generatedĀ byĀ theĀ resistiveĀ strainĀ sensorĀ 203Ā dueĀ toĀ deformationĀ ofĀ theĀ resistiveĀ strainĀ sensorĀ 203,Ā theĀ displayĀ controllerĀ 2Ā canĀ determineĀ regionĀ cĀ asĀ theĀ regionĀ whereĀ theĀ deformationĀ occurs.Ā AssumingĀ thatĀ theĀ regionĀ ofĀ theĀ flexibleĀ displayĀ panelĀ 1Ā fromĀ theĀ firstĀ rowĀ ofĀ pixelĀ unitsĀ toĀ theĀ deformedĀ regionĀ isĀ presentedĀ toĀ theĀ userĀ afterĀ theĀ deformationĀ underĀ thisĀ scenario,Ā theĀ displayĀ controllerĀ 60Ā canĀ determineĀ regionsĀ aĀ andĀ bĀ asĀ theĀ targetĀ displayĀ region.Ā TheĀ gateĀ lineĀ counterĀ 21Ā countsĀ theĀ totalĀ numberĀ ofĀ theĀ gateĀ linesĀ inĀ theĀ regionsĀ aĀ andĀ bĀ toĀ obtainĀ aĀ numericalĀ valueĀ 40,Ā andĀ accordinglyĀ theĀ clockĀ signalĀ controllerĀ 22Ā outputsĀ 40Ā clockĀ pulsesĀ toĀ driveĀ theĀ pixelĀ unitsĀ ofĀ theĀ firstĀ rowĀ toĀ theĀ fortiethĀ rowĀ toĀ displayĀ throughĀ GOAĀ 1Ā toĀ GOAĀ 40.
InĀ theĀ displayĀ controlĀ methodĀ ofĀ theĀ flexibleĀ displayĀ apparatusĀ accordingĀ toĀ oneĀ embodimentĀ ofĀ theĀ disclosure,Ā theĀ regionĀ whereĀ theĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panelĀ isĀ determinedĀ basedĀ onĀ theĀ detectionĀ signal.Ā TheĀ targetĀ displayĀ regionĀ isĀ determinedĀ basedĀ onĀ theĀ regionĀ whereĀ theĀ deformationĀ occurs,Ā soĀ thatĀ aĀ partĀ ofĀ theĀ flexibleĀ displayĀ panelĀ canĀ beĀ controlledĀ toĀ displayĀ afterĀ theĀ flexibleĀ displayĀ panelĀ deforms,Ā therebyĀ meetingĀ actualĀ viewingĀ demandsĀ ofĀ theĀ userĀ andĀ reducingĀ electricĀ energyĀ consumptionĀ simultaneously.
InĀ theĀ descriptionĀ ofĀ theĀ presentĀ disclosure,Ā theĀ termsĀ "center,Ā "Ā ā€œhorizontal,Ā ā€Ā "vertical,Ā "Ā "length,Ā "Ā "width,Ā "Ā "thickness,Ā "Ā "upper,Ā "Ā "lower,Ā "Ā "front,Ā "Ā "back,Ā "Ā "left,Ā "Ā "right,Ā "Ā "vertical,Ā "Ā "horizontal,Ā "Ā "top,Ā "Ā "bottom,Ā "Ā "inner,Ā "Ā "outer,Ā "Ā ā€œaĀ clockwiseĀ direction,Ā ā€Ā ā€œanĀ anticlockwiseĀ direction,Ā ā€Ā ā€œanĀ axialĀ direction,Ā ā€Ā ā€œaĀ radialĀ direction,Ā ā€Ā ā€œaĀ circumferentialĀ direction,Ā ā€Ā orĀ theĀ likeĀ areĀ basedĀ onĀ theĀ orientationĀ orĀ positionalĀ relationshipĀ shownĀ inĀ theĀ drawings.Ā TheyĀ areĀ usedĀ merelyĀ forĀ convenienceĀ ofĀ descriptionĀ andĀ simplifyingĀ theĀ descriptionĀ ofĀ theĀ presentĀ invention,Ā butĀ notĀ toĀ indicateĀ orĀ implyĀ thatĀ theĀ indicatedĀ apparatusĀ orĀ elementĀ mustĀ haveĀ aĀ specificĀ orientation,Ā orĀ beĀ constructedĀ andĀ operatedĀ inĀ aĀ specificĀ orientation,Ā thereforeĀ cannotĀ beĀ construedĀ asĀ aĀ limitationĀ ofĀ theĀ presentĀ disclosure.
InĀ addition,Ā theĀ termsĀ "first"Ā andĀ "second"Ā areĀ forĀ illustrationĀ purposesĀ onlyĀ andĀ areĀ notĀ toĀ beĀ construedĀ asĀ indicatingĀ orĀ implyingĀ relativeĀ importanceĀ orĀ impliedĀ referenceĀ toĀ theĀ quantityĀ ofĀ indicatedĀ technicalĀ features.Ā Thus,Ā featuresĀ definedĀ byĀ theĀ termsĀ "first"Ā andĀ "second"Ā mayĀ explicitlyĀ orĀ implicitlyĀ includeĀ oneĀ orĀ moreĀ ofĀ theĀ features.Ā InĀ theĀ descriptionĀ ofĀ theĀ presentĀ disclosure,Ā theĀ meaningĀ ofĀ "plural"Ā isĀ twoĀ orĀ moreĀ unlessĀ otherwiseĀ specificallyĀ andĀ specificallyĀ defined.
InĀ theĀ presentĀ invention,Ā theĀ termsĀ "mounted,Ā "Ā "connected,Ā "Ā "fixed,Ā "Ā andĀ theĀ likeĀ shouldĀ beĀ broadlyĀ understoodĀ unlessĀ expresslyĀ statedĀ andĀ limitedĀ otherwise.Ā ForĀ example,Ā theyĀ canĀ beĀ construedĀ asĀ fixedlyĀ connectedĀ orĀ detachablyĀ connectedĀ orĀ integrallyĀ connected.Ā TheyĀ canĀ beĀ mechanicallyĀ connectedĀ orĀ electricallyĀ connectedĀ andĀ canĀ beĀ directlyĀ connectedĀ orĀ indirectlyĀ connectedĀ throughĀ anĀ intermediateĀ medium.Ā ThereĀ canĀ alsoĀ beĀ anĀ internalĀ connectionĀ betweenĀ twoĀ elements.Ā AĀ personĀ ofĀ ordinaryĀ skillĀ inĀ theĀ artĀ wouldĀ understandĀ theĀ specificĀ meaningĀ ofĀ theĀ termsĀ inĀ theĀ disclosureĀ inĀ specificĀ situations.
InĀ theĀ disclosure,Ā unlessĀ explicitlyĀ statedĀ andĀ definedĀ otherwise,Ā whenĀ theĀ firstĀ featureĀ isĀ ā€œaboveā€Ā theĀ secondĀ featureĀ orĀ "below"Ā theĀ secondĀ feature,Ā theĀ twoĀ featuresĀ canĀ beĀ inĀ directĀ contactĀ orĀ indirectĀ contactĀ throughĀ anĀ intermediateĀ medium.Ā Also,Ā thatĀ theĀ firstĀ featureĀ isĀ "above"Ā theĀ secondĀ featureĀ canĀ beĀ thatĀ theĀ firstĀ featureĀ isĀ aboveĀ orĀ obliquelyĀ aboveĀ theĀ secondĀ feature,Ā orĀ onlyĀ aĀ heightĀ ofĀ theĀ firstĀ featureĀ isĀ higherĀ thanĀ thatĀ ofĀ theĀ secondĀ feature.Ā ThatĀ theĀ firstĀ featureĀ isĀ "below"Ā theĀ secondĀ featureĀ canĀ beĀ thatĀ theĀ firstĀ featureĀ isĀ belowĀ orĀ obliquelyĀ belowĀ theĀ secondĀ feature,Ā orĀ onlyĀ indicatesĀ thatĀ aĀ heightĀ ofĀ theĀ firstĀ featureĀ isĀ smallerĀ thanĀ thatĀ ofĀ theĀ secondĀ feature.
InĀ theĀ descriptionĀ ofĀ theĀ specification,Ā referencesĀ madeĀ toĀ theĀ termĀ ā€œoneĀ embodiment,Ā ā€Ā ā€œsomeĀ embodiments,Ā ā€Ā andĀ ā€œexemplaryĀ embodiments,Ā ā€Ā ā€œexample,Ā ā€Ā andĀ ā€œspecificĀ example,Ā ā€Ā orĀ ā€œsomeĀ examplesā€Ā andĀ theĀ likeĀ areĀ intendedĀ toĀ referĀ thatĀ specificĀ featuresĀ andĀ structures,Ā materialsĀ orĀ characteristicsĀ describedĀ inĀ connectionĀ withĀ theĀ embodimentĀ orĀ exampleĀ thatĀ areĀ includedĀ inĀ atĀ leastĀ oneĀ embodimentĀ orĀ exampleĀ ofĀ theĀ presentĀ disclosure.Ā TheĀ schematicĀ expressionĀ ofĀ theĀ termsĀ doesĀ notĀ necessarilyĀ referĀ toĀ theĀ sameĀ embodimentĀ orĀ example.Ā Moreover,Ā theĀ specificĀ features,Ā structures,Ā materialsĀ orĀ characteristicsĀ describedĀ mayĀ beĀ includedĀ inĀ anyĀ suitableĀ mannerĀ inĀ anyĀ oneĀ orĀ moreĀ embodimentsĀ orĀ examples.
TheĀ descriptionsĀ ofĀ theĀ variousĀ embodimentsĀ ofĀ theĀ presentĀ disclosureĀ haveĀ beenĀ presentedĀ forĀ purposesĀ ofĀ illustration,Ā butĀ areĀ notĀ intendedĀ toĀ beĀ exhaustiveĀ orĀ limitedĀ toĀ theĀ embodimentsĀ disclosed.Ā ManyĀ modificationsĀ andĀ variationsĀ willĀ beĀ apparentĀ toĀ thoseĀ ofĀ ordinaryĀ skillĀ inĀ theĀ artĀ withoutĀ departingĀ fromĀ theĀ scopeĀ andĀ spiritĀ ofĀ theĀ describedĀ embodiments.Ā TheĀ terminologyĀ usedĀ hereinĀ wasĀ chosenĀ toĀ bestĀ explainĀ theĀ principlesĀ ofĀ theĀ embodiments,Ā theĀ practicalĀ applicationĀ orĀ technicalĀ improvementĀ overĀ technologiesĀ foundĀ inĀ theĀ marketplace,Ā orĀ toĀ enableĀ othersĀ ofĀ ordinaryĀ skillĀ inĀ theĀ artĀ toĀ understandĀ theĀ embodimentsĀ disclosedĀ herein.
DescriptionĀ ofĀ symbolsĀ inĀ theĀ drawings:
1:Ā flexibleĀ displayĀ panel
2:Ā displayĀ controller
100:Ā displayĀ substrate
10:Ā pixelĀ unit
20:Ā strainĀ sensor
30:Ā signalĀ acquisitionĀ apparatus
40:Ā amplifier
50:Ā ADĀ converter

Claims (17)

  1. AĀ flexibleĀ displayĀ panelĀ comprising:
    aĀ displayĀ substrate;
    aĀ pluralityĀ ofĀ pixelĀ unitsĀ arrangedĀ inĀ anĀ arrayĀ onĀ theĀ displayĀ substrate;Ā and
    atĀ leastĀ oneĀ strainĀ sensorĀ onĀ theĀ displayĀ substrate,
    whereinĀ theĀ atĀ leastĀ oneĀ strainĀ sensorĀ isĀ configuredĀ toĀ detectĀ deformationĀ ofĀ theĀ flexibleĀ displayĀ panel.
  2. TheĀ flexibleĀ displayĀ apparatusĀ accordingĀ toĀ claimĀ 1,Ā whereinĀ eachĀ ofĀ theĀ atĀ leastĀ oneĀ strainĀ sensorĀ correspondsĀ toĀ aĀ regionĀ ofĀ theĀ flexibleĀ displayĀ panelĀ comprisingĀ aĀ pluralityĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ andĀ isĀ configuredĀ toĀ detectĀ theĀ deformationĀ inĀ theĀ regionĀ ofĀ theĀ flexibleĀ displayĀ panel.
  3. TheĀ flexibleĀ displayĀ panelĀ accordingĀ toĀ claimĀ 1,Ā whereinĀ theĀ atĀ leastĀ oneĀ strainĀ sensorĀ comprisesĀ aĀ pluralityĀ ofĀ strainĀ sensors,Ā andĀ theĀ pluralityĀ ofĀ theĀ strainĀ sensorsĀ isĀ arrangedĀ inĀ aĀ non-displayĀ regionĀ alongĀ aĀ firstĀ direction.
  4. TheĀ flexibleĀ displayĀ panelĀ accordingĀ toĀ anyĀ oneĀ ofĀ claimsĀ 1-3,Ā whereinĀ theĀ strainĀ sensorĀ isĀ aĀ resistiveĀ strainĀ sensor.
  5. TheĀ flexibleĀ displayĀ panelĀ accordingĀ toĀ claimĀ 4,Ā whereinĀ theĀ resistiveĀ strainĀ sensorĀ comprisesĀ aĀ repeatedlyĀ foldedĀ strainĀ resistanceĀ wireĀ alongĀ theĀ firstĀ directionĀ withĀ aĀ pluralityĀ ofĀ foldingĀ portionsĀ andĀ theĀ pluralityĀ ofĀ foldingĀ portionsĀ areĀ arrangedĀ alongĀ aĀ secondĀ direction.
  6. TheĀ flexibleĀ displayĀ panelĀ accordingĀ toĀ claimĀ 4,Ā whereinĀ theĀ atĀ leastĀ oneĀ strainĀ sensorĀ inĀ theĀ non-displayĀ regionĀ isĀ configuredĀ toĀ detectĀ theĀ deformationĀ ofĀ theĀ displayĀ panelĀ alongĀ theĀ secondĀ direction.
  7. TheĀ flexibleĀ displayĀ panelĀ accordingĀ toĀ anyĀ oneĀ ofĀ claimsĀ 1-6,Ā furtherĀ comprisingĀ aĀ signalĀ acquisitionĀ circuitĀ coupledĀ toĀ theĀ atĀ leastĀ oneĀ strainĀ sensorĀ andĀ configuredĀ toĀ acquireĀ aĀ detectionĀ signalĀ fromĀ theĀ atĀ leastĀ oneĀ strainĀ sensor.
  8. TheĀ flexibleĀ displayĀ panelĀ accordingĀ toĀ claimĀ 7,Ā furtherĀ comprising:
    anĀ amplifierĀ circuitĀ coupledĀ toĀ theĀ signalĀ acquisitionĀ circuitĀ ,Ā andĀ configuredĀ toĀ receiveĀ andĀ amplifyĀ theĀ detectionĀ signal;Ā and
    anĀ ADĀ converterĀ circuitĀ coupledĀ toĀ theĀ amplifiedĀ circuitĀ andĀ configuredĀ toĀ convertĀ theĀ amplifiedĀ detectionĀ signalĀ toĀ aĀ digitalĀ signal.
  9. TheĀ flexibleĀ displayĀ panelĀ accordingĀ toĀ claimĀ 7Ā orĀ claimĀ 8,Ā whereinĀ theĀ signalĀ acquisitionĀ circuitĀ comprisesĀ aĀ firstĀ resistor,Ā aĀ secondĀ resistor,Ā aĀ thirdĀ resistor,Ā andĀ aĀ voltageĀ detector,Ā and
    whereinĀ theĀ firstĀ resistor,Ā theĀ secondĀ resistor,Ā theĀ thirdĀ resistor,Ā andĀ theĀ strainĀ sensorĀ formĀ aĀ WheatstoneĀ bridge,Ā andĀ anĀ outputĀ terminalĀ ofĀ theĀ voltageĀ detectorĀ outputsĀ aĀ voltageĀ signal.
  10. TheĀ flexibleĀ displayĀ panelĀ accordingĀ toĀ claimĀ 7Ā orĀ claimĀ 8,Ā whereinĀ theĀ signalĀ acquisitionĀ circuitĀ comprisesĀ aĀ firstĀ resistor,Ā aĀ secondĀ resistor,Ā aĀ thirdĀ resistor,Ā andĀ aĀ currentĀ detector,Ā and
    whereinĀ theĀ firstĀ resistor,Ā theĀ secondĀ resistor,Ā theĀ thirdĀ resistor,Ā andĀ theĀ strainĀ sensorĀ formĀ aĀ WheatstoneĀ bridge,Ā andĀ anĀ outputĀ terminalĀ ofĀ theĀ currentĀ detectorĀ outputsĀ aĀ currentĀ signal.
  11. AĀ flexibleĀ displayĀ apparatusĀ includingĀ theĀ flexibleĀ displayĀ panelĀ accordingĀ toĀ anyĀ oneĀ ofĀ claimsĀ 1-10.
  12. TheĀ flexibleĀ displayĀ apparatusĀ accordingĀ toĀ claimĀ 11,Ā furtherĀ comprisingĀ aĀ displayĀ controllerĀ coupledĀ toĀ theĀ atĀ leastĀ aĀ strainĀ sensor,
    whereinĀ theĀ displayĀ controllerĀ isĀ configuredĀ toĀ determineĀ aĀ regionĀ whereĀ theĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panelĀ basedĀ onĀ theĀ detectionĀ signal,Ā toĀ determineĀ aĀ targetĀ displayĀ regionĀ basedĀ onĀ theĀ regionĀ whereĀ theĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panel,Ā andĀ toĀ controlĀ displayĀ ofĀ theĀ targetĀ displayĀ region.
  13. TheĀ flexibleĀ displayĀ apparatusĀ accordingĀ toĀ claimĀ 11,Ā whereinĀ theĀ targetĀ displayĀ regionĀ comprisesĀ atĀ leastĀ oneĀ non-deformedĀ regionĀ thatĀ isĀ atĀ oneĀ sideĀ ofĀ theĀ regionĀ whereĀ theĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panel.
  14. TheĀ flexibleĀ displayĀ apparatusĀ accordingĀ toĀ claimĀ 12,Ā whereinĀ theĀ displayĀ controllerĀ isĀ furtherĀ configuredĀ toĀ acquireĀ informationĀ aboutĀ theĀ numberĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ inĀ theĀ targetĀ displayĀ region,Ā toĀ generateĀ aĀ correspondingĀ numberĀ ofĀ clockĀ signalsĀ basedĀ onĀ theĀ numberĀ ofĀ rowsĀ ofĀ theĀ pixelĀ unitsĀ inĀ theĀ targetĀ displayĀ region,Ā andĀ toĀ controlĀ theĀ targetĀ displayĀ regionĀ toĀ displayĀ throughĀ theĀ correspondingĀ numberĀ ofĀ theĀ clockĀ signals.
  15. AĀ displayĀ controlĀ methodĀ ofĀ aĀ flexibleĀ displayĀ apparatus,Ā comprising:
    detectingĀ deformationĀ ofĀ theĀ flexibleĀ displayĀ panelĀ andĀ generatingĀ aĀ detectionĀ signal;
    determiningĀ aĀ regionĀ whereĀ theĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panelĀ basedĀ onĀ theĀ detectionĀ signal;
    determiningĀ aĀ targetĀ displayĀ regionĀ basedĀ onĀ theĀ regionĀ whereĀ theĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panel,Ā and
    controllingĀ displayĀ ofĀ theĀ targetĀ displayĀ region.
  16. TheĀ displayĀ controlĀ methodĀ accordingĀ toĀ claimĀ 15,Ā whereinĀ theĀ targetĀ displayĀ regionĀ comprisesĀ atĀ leastĀ oneĀ non-deformedĀ regionĀ thatĀ isĀ atĀ oneĀ sideĀ ofĀ theĀ regionĀ whereĀ theĀ deformationĀ occursĀ inĀ theĀ flexibleĀ displayĀ panel.
  17. TheĀ displayĀ controlĀ methodĀ accordingĀ toĀ claimĀ 15,Ā whereinĀ controllingĀ displayĀ ofĀ theĀ targetĀ displayĀ regionĀ comprisesĀ :
    acquiringĀ informationĀ aboutĀ theĀ numberĀ ofĀ rowsĀ ofĀ pixelĀ unitsĀ inĀ theĀ targetĀ displayĀ region;
    generatingĀ aĀ correspondingĀ numberĀ ofĀ clockĀ signalsĀ basedĀ onĀ theĀ numberĀ ofĀ rowsĀ ofĀ theĀ pixelĀ unitsĀ inĀ theĀ targetĀ displayĀ region;Ā and
    controllingĀ theĀ targetĀ displayĀ regionĀ toĀ displayĀ throughĀ theĀ correspondingĀ numberĀ ofĀ theĀ clockĀ signals.
PCT/CN2018/083699 2017-08-29 2018-04-19 Flexible display panel, flexible display apparatus, and display control method thereof Ceased WO2019041830A1 (en)

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